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Biomedical subjects

F Zhang

Publications and source records attributed to F Zhang.

At least 433 records · Page 24Linked to original sources

The evaluation of developmental toxicity of chemicals exposed occupationally using whole embryo culture.

The purpose of this study was to employ the whole embryo culture (WEC) system to evaluate the developmental toxicity of industrial chemicals. Five chemicals including lead, cadmium, vinyl chloride, 1,2-dichloroethan, and carbon disulphide were tested in our laboratory both in vitro and in vivo (except lead). In vitro studies showed that cadmium and lead were teratogenic in the rat; whilst carbon disulphide, 1,2-dichloroethan and vinyl chloride mainly induced embryo growth retardation. The in vitro effects on development of the five industrial chemicals were similar to the effects in vivo. The in vitro effects were studied by three different exposure routes, direct exposure--chemicals added to the culture medium; indirect exposure--serum prepared from treated rats then used as culture medium, and pre-exposure--embryos treated maternally then explanted into control (untreated) culture medium. Comparing these three different exposure routes suggests that the last exposure route is the most effective when using WEC to evaluate developmental toxicity of industrial chemicals. The effects on embryo development of culturing in sera prepared from subjects occupationally exposed to antineoplastic drugs (ADs) was also tested by the WEC system. Embryos were cultured with human serum that was thought to contain ADs or ADs' metabolic materials (serum taken from nurses routinely handling ADs), to evaluate the effects of ADs on embryo development. Embryos (9.5-day) cultured with serum from 11 female nurses who had been handling ADs for 2-17 years in the oncology department all survived, but showed slight growth retardation. Embryos cultured with serum from 30 healthy and unexposed people served as controls and embryo development in their serum was normal.

Animals↗

Potential new insights into the molecular mechanisms of methamphetamine-induced neurodegeneration.

In the event that methamphetamine evokes HO. formation within serotonergic axon terminals, the resultant oxidation of 5-HT would be expected to generate not only 5,6-DHT but also T-4,5-D, 7-S-Glu-T-4,5-D, 6, 8, and 7,7'-D (figure 1), at least three of which (T-4,5-D, 7-S-Glu-T-4,5-D, and 6) are lethal in mouse brain. Furthermore, several intermediates/products formed in the in vitro oxidation of 5-HT by HO. are readily autoxidized (4,5-DHT, 5,6-DHT, 5, 7, and 9) or redox cycled (T-4,5-D, 6, 8, 7,7'-D, 7-S-Glu-T-4,5-D) in reactions that would be expected to yield O2-. and/or H2O2 as byproducts. These byproducts, in the presence of trace levels of transition metal ion catalysts, would be readily converted into HO. (Walling 1975; Halliwell and Gutteridge 1984). Together these putative aberrant oxidative metabolites of 5-HT and HO.-forming reactions might contribute to the degeneration of serotonergic nerve terminals. Similarly, the methamphetamine-induced intraneuronal formation of HO. in dopaminergic terminals might be expected to generate not only 6-OHDA (and 2-OHDA and 5-OHDA, figure 3) but also 5,-S-CyS-DA and 5-S-Glu-DA, precursors of DHBT 17 and other more complex dihydrobenzothiazines (figure 4). DHBTs 17 to 19 are lethal in mouse brain, although at this time the biochemical/chemical mechanisms underlying this toxicity and specific neuronal systems affected are unknown. However, 5-S-CyS-DA and 17 to 19 are much more easily oxidized than DA, and the latter DHBTs appear to be capable of redox cycling reactions (Zhang and Dryhurst 1994). Thus, the HO.-mediated oxidation of DA in dopaminergic nerve terminals induced by methamphetamine might be expected to generate aberrant oxidative metabolites that (as a result of autoxidation and redox cycling reactions) potentiate formation of O2-. and/or H2O2, and then HO. and neuronal damage. A number of lines of evidence, discussed previously, suggest that aberrant metabolite(s) of DA (other than or in addition to 6-OHDA) might contribute to the methamphetamine-induced degeneration of not only dopaminergic terminals but also serotonergic terminals. Similarly, aberrant metabolite(s) of 5-HT (other than or in addition to 5,6-DHT) might be involved in the degeneration of serotonergic and dopaminergic terminals and a subpopulation of cell bodies in the somatosensory cortex. Experimental evidence indicates that some of the neurodegenerative effects evoked by methamphetamine are mediated by NMDA and GABA receptors. Thus, it will be of considerable interest to investigate the neurotoxicity of putative aberrant oxidative metabolites of 5-HT (figures 1 and 2) and DA (figures 4 and 5) towards serotonergic, dopaminergic, and other neuronal systems and their interactions with NMDA, GABA, and other brain receptors. A central question relates to mechanisms by which methamphetamine might evoke the intraneuronal formation of oxygen radicals that appear to play important roles in the overall neurodegenerative processes evoked by this drug (DeVito and Wagner 1989; Cadet et al. 1994). Once putative oxidative metabolites of 5-HT such as T-4,5-D, 7-S-Glu-T-4,5-D, 5,6-DHT, 6, 8, and 7,7'-D (figure 1) are formed intraneuronally, autoxidation/redox cycling reactions should, in principle, be capable of generating O2-. and/or H2O2, the precursors of HO.. Similarly, intraneuronal formation of 6-OHDA, 5-S-CyS-DA, and DHBTs 17 to 19 and 22 would also be expected to potentiate elevated fluxes of O2-., H2O2, and HO. as a result of the facile autoxidation/redox cycling reactions of these putative aberrant metabolites. The presence of very low concentrations of 5-S-CyS-DA in DA-rich regions of human and other mammalian brains suggest that autoxidation (Rosengren et al. 1985; Fornstedt et al. 1986, 1989, 1990) or perhaps some other form of DA oxidation is a normal reaction in vivo. Furthermore, available evidence suggests that it is cytoplasmic DA that is oxidized to give 5-S-CyS-DA (Fornstedt et al. 1989; Fornstedt and

Animals↗

Molecular cloning, sequencing, functional analysis and expression in E. coli of major core protein gene (S3) of rice dwarf virus Chinese isolate.

The complete nucleotide sequence of major core protein gene (segment S3) of rice dwarf virus (RDV) Chinese isolate was determined after cDNA cloning from the viral genomic RNA. Sequence analysis showed that the cloned fragment is 3195 bp in length and contains a single open reading frame (ORF), encoding the major core protein (P3) which M(r) of 114 K. The nucleotide and deduced amino acid sequences of S3 of this isolate share significant homology (94.1% and 97%, respectively) with those of S3 of the Japanese isolate. At the amino acid level, P3 of RDV Chinese isolate shares significant homology with P3 of rice gall dwarf virus (RGDV), significant regional homology with the rotavirus penetration, and homology with spheroidin of amsacta entomopoxvirus (SPH), which is the major protein of the occlusion body, with clp-like ATP-dependent protease binding subunit and with ATP-dependent protease ATP-binding subunit. Amino acid sequence analysis also showed that P3 contains RNA-dependent RNA polymerase (RDRP) motif-like elements such as DXXXD, SGXXXXXXN, GDD and ENXXXY. These results may suggest that P3 is a multifunctional protein which plays very important roles in the virus structure formation, virus replication and penetration processes. The full length cDNA sequence of RDV S3 and a partial one which covers nt 1004-3195 were cloned into bacterial expression vector pTrcHisB for expression. The full length cDNA sequence failed to be expressed in E. coli, but the partial sequence was successfully expressed there as confirmed by the Western blot analysis. Further analysis of RDV P3 is under way.

Amino Acid Sequence↗

[Experimental study of selective muscarinic receptor antagonists on attenuation of morphine tolerance and dependence in rats].

OBJECTIVE: To characterize the role of muscarinic receptor subtype in the process of the morphine tolerance and dependence. METHODS: The morphine (Antinociception) tolerance was assessed by using hot-plate latency, and morphine dependence was characterized by naloxone-precipitated withdrawal. Intraperitoneal (i.p.) or intrathecal (i.t.) injection of muscarinic M1 selective antagonist pirenzepine or M2 selective antagonist methoctramine was carried out. RESULTS: Methoctramine (i.p.) for 6 days restored the sensitivity to morphine in male Sprague Dawley rats that are tolerant as a result of 6 days of b.i.d. morphine injection, in contrast, saline and pirenzepine (i.p.) did not increase the mean HP latency of morphine tolerant rats. Both methoctramine and pirenzepine in doses did not alter the baseline HP latency. Concurrent treatment with pirenzepine (i.t.) significantly attenuated the development of morphine tolerance produced by twice daily injection of morphine in a dose-dependent manner, however, methoctramine (i.t.) also decreased without dose-relation. In addition, the withdrawal symptoms precipitated by naloxone in morphine dependent rats were blocked by methoctramine (i.p.) or pirenzepine (i.t.) at single dose injection in a dose-dependent manner. Methoctramine (i.t.) at 200 micrograms/kg could partially inhibit the withdrawal symptoms. CONCLUSIONS: The data suggested that the muscarinic receptor subtype predominating M2 receptor at the peripheral and M11 in the spinal cord mediate the process of morphine tolerance and dependence in rat.

Animals↗

Clinical features of 201 cases with Duane's retraction syndrome.

OBJECTIVE: To summarize the clinical features of 201 cases with Duane's retraction syndrome (DRS) and discuss its differential diagnosis. METHODS: We retrospectively summarized the 201 cases from 1979 to 1996. The clinical features including chief complaints, sexual distribution, age at first visit, laterality, type of presentation, ocular deviation in the primary position, refractive errors, amblyopia, globe retraction, change of the palpebral fissure, upshoot and downshoot in adduction, binocular single vision, and its associated ocular and non-ocular anomalies were analysed. RESULTS: There were 99 males and 102 females with a female-to-male ratio 1:1. The 65.88% of DRS cases had left eye involvement with two-to-one predilection for the left eye. The most common form of the syndrome was type I (184 patients, 91.54%). Exotropia was the most common deviation in the primary gaze (72 patients, 35.8%). Among 118 patients, most had abduction deficits, globe retraction in adduction, and faceturn as to maintaining single binocular vision. Crocodial tears (26 patients, 11.93%) was the most frequently encounted ocular abnormalities. CONCLUSIONS: Diagnosis of DRS in a typical case is not difficult, however, children with bilateral abduction deficits which may mimic DRS must be differentiated from the following four motility disorders, namely, abducens nerve palsy, Moebius syndrome, congenital oculomotor apraxia, and congenital or infantile esotropia.

Abducens Nerve↗

[Trends and changes in antimicrobial resistance of clinical isolates from 11 hospitals in Beijing area].

OBJECTIVE: To study the antimicrobial resistance and its changes of clinical isolates in Beijing area. METHODS: The diameters of the inhibition zones of clinical isolates around antibiotic susceptibility test discs at 12 hospitals in Beijing area were computerfiled and analysed by the software of 'WHONET' according to NCCLS published in 1994. RESULTS: A total of 10,305 isolates were collected in 1995. The percentages of resistance were as follows: (1) in E. coli: amikacin, 8%, ceftazidime, 15%, the other third generation cephalosporins, about 30%, (2) in Klebsiella spp: ofloxacin, 0%, ceftazidime, 15%, ciprofloxacin, 17%, norfloxacin, 15%, ofloxacin, 5%, (4) in Staph. aureus: norvancomycin, 0%, (5) in Strep. pneumoniae: penicillin G, 9%, (6) in Enterococcus spp: norvancomycin, 7%. The antimicrobial resistant changes over a six year period from 1990 to 1995 were surveyed and it was found that resistant percentage of the most isolates to quinolones, for example norfloxacin, increased significantly year by year and no remarkable differences of resistance to antimicrobial agents but quinolones were observed in Ps. aeruginosa. CONCLUSION: Antimicrobial resistance should be emphasised during clinical therapy with antimicrobial agents, and trends in antimicrobial resistance of isolates should be followed.

Anti-Infective Agents↗

[Applied anatomy of osteo-periosteal flap pedicled with superior malleolar branch of anterior tibial artery].

In order to investigate the blood supply of osteo-periosteal flap of lateral inferior part of tibia, 40 lower limbs of adult cadavers were observed. The result showed that the superior malleolar branch was the biggest branch on the lateral inferior part of tibia and served as the main blood supply to the above area. It originated from the anterior tibial artery, 3.1 +/- 0.8 cm above the intermalleolar line. During its way to the anterior border of the tibia, it gave out the ascending and descending branches. The ascending branch was along the anterior border upward and anastomosed with the musculo-periosteol branch of the anterior tibial artery at the level of 6.3 +/- 1.3 cm above the intermalleolar line. The decending branch was anastomosed with the anterior medial malleolar artery. For the anastomosis between the superior malleolar branch with the peripheral vessels, the osteo-periosteol flap could be designed at the lateral side of the lower part of tibia in size of 8-10 cm x 4-6 cm. This was a new donor area of osteo-periosteol flap for repair of non-union of bone in lower end of tibia or arthrodesis of the ankle joint.

Adult↗

Dissociation of long and very long chain fatty acids from phospholipid bilayers.

Dissociation of fatty acids (FA) from and transbilayer movement (flip-flop) in small unilamellar phosphatidylcholine vesicles (SUV) were monitored by measuring the pH inside the vesicle with an entrapped water-soluble fluorophore, pyranin. With a pH gradient imposed upon SUV preloaded with FA, the rate of flip-flop of saturated very long chain FA (C20:0, C:22:0, and C24:0) was shown to be fast (t1/2 < 1 s); previously, we showed by stopped flow measurements that flip-flop of long chain (14-18 carbons) FA is very fast [t1/2 < 10 ms; Kamp, F., et al. (1995) Biochemistry 34, 11928-11937]. The rates of dissociation of FA from SUV were evaluated by incorporating FA into donor vesicles and measuring transfer to acceptor vesicles. The transfer was followed by changes in internal pH of either donor or acceptor vesicles with stopped flow (C14:0, C16:0, C17:0, C18:0, C18:1, and C18:2) or on-line (C20:0, C22:0, and C24:0) fluorescence. All FA showed a single-exponential transfer process that was slower than the lower limits established for the rate of flip-flop, with t1/2 of dissociation ranging from 20 ms for C14:0 to 1900 s for C24:0. The pseudo-unimolecular rate constant (koff) for dissociation of C14:0 to C26:0 showed a 10-fold decrease for each addition of two CH2 groups to the acyl chain and a delta (delta G) of -740 cal/CH2. The dissociation rate constants for oleic acid (18:1) and linoleic acid (18:2) were 5 and 10 times faster, respectively, than that of C18:0. The rates of dissociation for typical dietary FA are sufficiently rapid that complex mechanisms (e.g. protein-mediated) may not be required for their desorption from biological membranes. The very slow dissociation rates for C24:0 and C26:0 may accentuate their pathological effects in diseases in which they accumulate in tissues.

Arylsulfonates↗

Vitamin D analog 25-(OH)-16,23E-Diene-26,27-hexafluoro-vitamin D3 induces differentiation of HL60 cells with minimal effects on cellular calcium homeostasis.

Numerous vitamin D3 analogs (VDAs) can inhibit the proliferation of cells from several types of human malignancies. The physiologically active form of vitamin D3, 1,25-dihydroxyvitamin D3(1,25D3), is formed by successive hydroxylations of cholecalciferol at the 25 and 1 alpha positions. In this study we examined the effects of the absence of the 1 alpha (OH) group, introduction of a double bond in position 16, and further modifications at the 23, 26, and 27 positions in the side chain on the potency of the VDAs. The parameters studied were the rapidity of the induction of monocytic differentiation, the cell cycle traverse, and the effects of VDAs on intracellular calcium homeostasis in HL60 cells. The results show that (1) 1,25D3 derivatives which lace the 1 alpha (OH) group have little differentiation-inducing activity, (2) hexafluorination (6F) of the terminal methyl groups in the side chain partially restores the activity of 1 alpha-desoxy compounds and potentiates the activity of 1 alpha hydroxylated compounds, and (3) 25-(OH)-16,23E-diene-26,27-hexafluoro-vitamin D2 (Ro25-9887) alone among the twelve compounds tested induces differentiation with only minimal changes in the basal levels of intracellular calcium and store-dependent calcium influx in HL60 cells. Addition of 1 alpha (OH) group to this compound increases its differentiation-inducing activity but also elevates basal calcium level. The results suggest that altered calcium homeostasis is not an obligatory component of HL60 leukemia cell differentiation, and that Ro25-9887 and related VDAs may be suitable for testing as components of anti-leukemic therapy.

CD11 Antigens↗

Transition to tetraploidy in 1,25-dihydroxyvitamin D3-resistant HL60 cells is preceded by reduced growth factor dependence and constitutive up-regulation of Sp1 and AP-1 transcription factors.

Increased ploidy is an ominous event in the progression of human malignancies. It is usually associated with an increased growth rate of the neoplastic cells and a generally more autonomous and aggressive biological behavior. However, it has not been established whether the more rapid growth rate and growth factor independence are consequences of the polyploid, karyotypically increasingly aberrant nature of these cells or whether the accelerated, more autonomous growth contributes to polyploidization. In this study, we have examined a recently described (H. J. Wajchman et al., Exp. Cell Res., 224: 312-322, 1996) series of sublines of HL60 cells with increasing resistance to the monocytic differentiation-inducing steroid hormone 1,25-dihydroxyvitamin D3 (1,25D3) and found that growth factor independence, shown by reduced requirement for serum supplementation of the medium and the ability to grow at low seeding densities, precedes polyploidization of these cultures. The growth factor independence was found to be accompanied by constitutive changes in the DNA binding pattern of the ubiquitous transcription factor Sp1, characteristic of an exposure to 1,25D3. Similar changes in the pattern of AP-1 binding were also observed in the 1,25D3-resistant HL60 sublines, but the intensity of the DNA binding by AP-1 was increased only in sublines with resistance to 1,25D3 but still near-diploid. The data suggest that the culture of HL60 cells in the presence of 1,25D3 results in constitutive up-regulation of growth-related machinery that reduces the need for growth factors and cytokines and demonstrate that this increased growth potential precedes polyploidization of the culture populations.

Animals↗

Evaluation of five QT correction formulas using a software-assisted method of continuous QT measurement from 24-hour Holter recordings.

To evaluate and compare QT correction formulas in healthy subjects, we used 24-hour Holter monitoring because it allows the assessment of QT intervals over a large range of rates. Computer-assisted QT-interval measurements were obtained from 21 subjects. QT-RR relations for individuals and the group were fitted by regression analysis to 5 QT prediction formulas: simple Bazett's, modified Bazett's, linear (Framingham), modified Fridericia's and exponential (Sarma's). There were no significant differences in mean squared residuals between formulas. When using individually calculated regression parameters, each formula gave good or acceptable QT correction over the entire range of RR intervals. Simple Bazett's formula (which uses no regression parameters) was unreliable at high rates. Akaike information criteria rank was: Sarma's, Framingham, modified Bazett's, Fridericia's, and simple Bazett's. When group-based regression parameters were applied to individuals, no formula had a clear advantage over simple Bazett's. We conclude that any formula that invokes regression parameters unique to each individual provides satisfactory QT correction. Determination of these parameters requires long-term recording to obtain an adequate range of rates. Group-based regression parameters give poor correction. When individual parameters cannot be determined, as in a 12-lead electrocardiogram, no formula provides an advantage over the familiar simple Bazett's.

Electrocardiography, Ambulatory↗

Blockage of RNA polymerase as a possible trigger for u.v. light-induced apoptosis.

To study the triggering mechanism(s) of the induction of apoptosis following exposure to u.v. light, we used a genetic approach involving cell strains derived from patients with inherited deficiencies in nucleotide excision repair. It was found that cells from patients with Cockayne's syndrome, which are deficient in the processing of u.v.-induced pyrimidine dimers from the transcribed DNA strand, are induced to undergo apoptosis at much lower doses of u.v. light than cells with proficient strand-specific repair. The induction of apoptosis correlated to the induction of p53 and to the inhibition of total RNA and poly(A) mRNA synthesis. We also show that active p53 proteins accumulate following u.v.-irradiation without any apparent requirement for DNA strand breaks or excision repair intermediates. We propose that the blockage of RNA polymerases at DNA lesions in the transcribed strand triggers the induction of a pathway leading to apoptosis. These findings may help explain a long standing enigma of why, despite the DNA repair deficiency, patients with Cockayne's syndrome do not experience an elevated risk for skin cancer since potentially pre-mutagenic cells are eliminated by an easily triggered apoptotic pathway.

Apoptosis↗

Modulation of phagocytosis by anisoosmolarity and betaine in rat liver macrophages (Kupffer cells) and RAW 264.7 mouse macrophages.

Hypoosmotic exposure (205 mosmol/l) of rat liver macrophages (Kupffer cells) for 12 h stimulated phagocytosis of latex particles by about 20%, whereas hyperosmotic exposure (405 mosmol/l) resulted in 30-40% inhibition. Inhibition of phagocytosis by hyperosmolarity was fully prevented in the presence of betaine, which acts as an osmolyte in liver macrophages. When hyperosmotically exposed Kupffer cells were preloaded with betaine, induction of phagocytosis by addition of latex particles led to the stimulation of betaine efflux from the cells. Stimulation of phagocytosis also inhibited the hyperosmolarity-induced cumulative uptake of betaine into Kupffer cells, but did not prevent the hyperosmolarity-induced increase in BGT1-mRNA levels. Whereas these findings suggest an involvement of cell volume and betaine in the regulation of phagocytosis in Kupffer cells, betaine transport was not affected upon induction of phagocytosis in RAW 264.7 mouse macrophages. The findings are compatible with a role of betaine in maintaining cell volume homeostasis during phagocytosis in Kupffer cells, but not in RAW 264.7 mouse macrophages. This may be relevant for the maintenance of liver hemodynamics, since volume changes of liver macrophages following ingestion of phagocytozable material might otherwise impair sinusoidal perfusion.

Animals↗

Modulation of tumor necrosis factor-alpha release by anisoosmolarity and betaine in rat liver macrophages (Kupffer cells).

Hypoosmotic exposure (205 mosmol/l) of rat liver macrophages together with lipopolysaccharide (LPS) inhibited the LPS-induced tumor necrosis factor-alpha (TNF-alpha) release by about 60% and markedly diminished the LPS-induced increase of TNF-alpha mRNA levels. Hyperosmotic exposure (405 mosmol/l) had no effect on total TNF-alpha release, however, both TNF-alpha accumulation in the medium and the LPS-induced increase of TNF-alpha mRNA levels were significantly delayed under these conditions. This delay was abolished upon addition of betaine, which acts as an osmolyte in Kupffer cells. When LPS was added to Kupffer cells that had been preexposed to hyperosmotic medium for 24 h, the LPS-induced TNF-alpha release was inhibited by 90% when compared to normoosmotic conditions. Likewise, the LPS-induced increase in TNF-alpha mRNA levels was largely abolished. Inhibition of TNF-alpha release and of the increase in the TNF-alpha mRNA level in response to hyperosmolarity/LPS, however, was largely overcome when indomethacin or betaine was present during the hyperosmotic preincubation period. Because betaine has recently been shown to inhibit the hyperosmolarity-induced induction of cyclooxygenase-2 and stimulation of prostaglandin production, these findings suggest that the effect of betaine in restoring the LPS-induced TNF-alpha response in hyperosmotically exposed Kupffer cells is mediated by an inhibition of prostaglandin synthesis. The findings point to a regulatory role of cell volume and betaine for TNF-alpha production by liver macrophages, suggesting a new role of osmolytes in modulating immune function.

Animals↗

Flexibility is a likely determinant of binding specificity in the case of ileal lipid binding protein.

BACKGROUND: The family of lipid binding proteins (LBPs) includes a large number of fatty acid binding proteins (FABPs) but only two proteins (ileal lipid binding protein, ILBP, and liver fatty acid binding protein) that can bind both fatty acids and bile acids. Bile acid transport is medically and pharmacologically important, but is poorly understood. To understand the binding properties of ILBP, we studied its solution structure with and without bound lipids and compared these with known structures of FABPs. RESULTS: The sequence-specific 1H resonance assignments for porcine ILBP have been determined by homonuclear two-dimensional (2D) NMR spectroscopy for the apo-protein as well as for ILBP complexes with fatty acid and bile acid ligands. From NOE spectra and hydrogen exchange data, similar secondary structure elements were identified for all three protein forms. ILBP is composed of ten antiparallel beta strands arranged in two nearly orthogonal beta sheets (a fold seen in other FABPs, and dubbed the "beta-clam shell'), covered on one side by two short, nearly parallel alpha helices. Binding of fatty acids or bile acids to ILBP alters mainly the side-chain proton resonances of amino acids within the protein cavity, indicating that both bile acids and fatty acids can bind in the interior of the protein between the two beta sheets; binding of bile acids stabilizes the protein backbone by a small amount. Fast hydrogen exchange rates for the backbone amide protons of ILBP indicate that the hydrogen-bonding network of the beta sheet in ILBP is weaker than the corresponding network in rat intestinal and bovine heart FABPs. CONCLUSIONS: The tertiary structure of ILBP is similar to that of other LBPs, but appears to be unusually flexible, with a relatively weak hydrogen-bonding network. It is likely that this flexibility is important in allowing bile acids, which are larger and more rigid than fatty acids, to enter the central cavity of the protein.

Amino Acid Sequence↗

Regulation of vesicular pH in liver macrophages and parenchymal cells by ammonia and anisotonicity as assessed by fluorescein isothiocyanate-dextran fluorescence.

Short-term-cultivated rat hepatocytes and Kupffer cells were allowed to endocytose fluorescein isothiocyanate (FITC)-coupled dextran, in order to study the effects of aniso-osmotic exposure and NH4Cl on apparent vesicular pH (pHves) by single-cell fluorescence. Following a 2 h loading period with FITC-dextran in normo-osmotic (305 mosmol/l) medium, the apparent pHves was 6.01 +/- 0.05 (n = 39) in parenchymal cells and 4.94 +/- 0.04 (n = 76) in Kupffer cells. Under these conditions pHves in parenchymal cells, but not in Kupffer cells, was sensitive to changes in ambient osmolarity. Inhibition of vacuolar H(+)-ATPase by concanamycin A did not affect the osmosensitivity of pHves in parenchymal cells. However, the effects of anisotonicity on pHves were largely abolished in the presence of 4.4'-di-isothiocyanato-stibene-2,2'-disulphonic acid (DIDS) or when extracellular chloride was substituted for gluconate. In neither Kupffer cells, nor liver parenchymal cells did hypo-osmotic cell swelling cause an increase in intracellular Ca2+. With regard to vesicular acidification, the following differences were noted between parenchymal and Kupffer cells. (1) In Kupffer cells endocytosed FITC-dextran reached a strongly acidic compartment with a pH value of approx. 5 within 5 min, whereas it took 4-5 h in parenchymal cells. Modification of pHves by hypo-osmolarity in Kupffer cells was only observed in a short-lived "early' compartment with a pH value of approx. 6. (2) In contrast to pHves in parenchymal cells, pHves in Kupffer cells was very sensitive towards alkalinization by NH4Cl: addition of NH4Cl at 1 or 10 mM increased apparent pHves by 0.80 or 1.46 in Kupffer cells, but only by 0.18 or 0.56 in parenchymal cells. The low ammonia sensitivity of pHves in parenchymal cells was observed not only a the less acidic (pH approx. 6) endocytotic compartment which is reached by FITC-dextran within 2 h, but also in the stronger acidic compartment (pH approx. 5) which is reached after 4-5 h. (3) NH4Cl had no effect on the osmosensitivity of pHves in parenchymal cells, whereas in Kupffer cells pHves became sensitive to anisotonicity when NH4Cl was present. Osmosensitivity of pHves in Kupffer cells under these conditions, however, was not affected by genistein, DIDS or colchicine, whereas these compounds abolished the osmosensitivity of pHves in parenchymal cells. It is suggested that regulation of pHves by cell volume in liver parenchymal cells involves changes of vesicular chloride conductance. In addition, there are marked differences between Kupffer and parenchymal cells with respect to vesicular ammonia permeability and the kinetics of endocytotic membrane flow and acidification.

Ammonia↗

Enhanced electrophoretic separation and resolution of myosin heavy chains in mammalian and avian skeletal muscles.

We report a sodium dodecyl sulfate-polyacrylamide gel electrophoresis protocol for the reliable separation, with high resolution, of myosin heavy chain isoforms in adult avian (chicken) and mammalian (mouse) skeletal muscles. The sample preparation time can be relatively short, thereby minimizing endogenous proteolytic activity which may otherwise result in dispersed and spurious bands. Inclusion of 2-mercaptoethanol in the upper electrode buffer greatly improves band resolution. Glycerol is commonly included in the reported protocols for myosin heavy chain separation and our results demonstrate that the concentration of glycerol employed can have a marked effect on the relative order of migration among myosin heavy chain isoforms.

Animals↗