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Biomedical subjects

L Song

Publications and source records attributed to L Song.

At least 145 records · Page 8Linked to original sources

alpha-Hemolysin, gamma-hemolysin, and leukocidin from Staphylococcus aureus: distant in sequence but similar in structure.

alpha-Hemolysin from Staphylococcus aureus assembles from a water-soluble, monomeric species to a membrane-bound heptamer on the surface of target cells, creating water-filled channels that lead to cell death and lysis. Staphylococcus aureus also produces the gamma-hemolysin and leukocidin toxins, which function as two component toxins in the disruption and lysis of erythrocytes and leukocytes. Analysis of the aligned sequences of alpha-hemolysin, gamma-hemolysin, and leukocidin in the context of the alpha-hemolysin heptamer structure supports the conclusion that even though the level of sequence identity between alpha-hemolysin and the gamma-hemolysin and leukocidin toxins is in the so-called twilight zone, the three-dimensional structures of the protomers are probably conserved. By analogy with alpha-hemolysin, gamma-hemolysin and leukocidin may also form oligomeric, transmembrane channels in which an antiparallel beta-barrel constitutes the primary membrane-embedded domain.

Amino Acid Sequence↗

Studies of cation binding in ZnCl2-regenerated bacteriorhodopsin by x-ray absorption fine structures: effects of removing water molecules and adding Cl- ions.

The binding of Zn2+ in Zn2+-regenerated bacteriorhodopsin (bR) was studied under various conditions by x-ray absorption fine structures (XAFS). The 0.9:1 and 2:1 Zn2+:bR samples gave similar XAFS spectra, suggesting that Zn2+ might have only one strong binding site in bR. It was found that in aqueous bR solution, Zn2+ has an average of six oxygen or nitrogen ligands. Upon drying, two ligands are lost, suggesting the existence of two weakly bound water ligands near the cation-binding site in bacteriorhodopsin. When excess Cl- ions were present before drying in the Zn2+-regenerated bR samples, it was found that two of the ligands were replaced by Cl- ions in the dried film, whereas two remain unchanged. The above observations suggest that Zn2+ has three types of ligands in regenerated bR (referred to as types I, II, and III). Type I ligands are strongly bound. These ligands cannot be removed by drying or by exchanging with Cl- ions. Type II ligands cannot be removed by drying, but can be replaced by Cl- ligands. Type III ligands are weakly bound to the metal cation and are most likely water molecules that can be removed by evaporation under vacuum or by drying with anhydrous CaSO4. The results are discussed in terms of the possible structure of the strongly binding site of Zn2+ in bR.

Bacteriorhodopsins↗

Optical rotation of the second harmonic radiation from retinal in bacteriorhodopsin monomers in Langmuir-Blodgett film: evidence for nonplanar retinal structure.

We observed optical rotation of the plane of polarization of the second harmonic (SH) radiation at 532 nm (in resonance with the retinal absorption) generated in reflection geometry in Langmuir-Blodgett film of bacteriorhodopsin (bR). The analysis of the experimental data showed that this effect arises from the nonvanishing contribution of the antisymmetrical part of the hyperpolarizability tensor. This requires that the dipole moment of the resonant electronic transition, the change of the dipole moment upon electronic excitation, and the long axis of the retinal not be coplanar. Such conditions are satisfied only if the retinal has a nonplanar geometry, a conclusion that could lend support to the heterogeneity model of the origin of the biphasic band shape of the linear CD spectrum of the retinal in bR. On the basis of our theoretical analysis, we were able to estimate the angle between the induced dipole moment and the plan that contains the long axis of the chromophore and the transition dipole moment of the retinal absorption.

Bacteriorhodopsins↗

Designed protein pores as components for biosensors.

BACKGROUND: There is a pressing need for new sensors that can detect a variety of analytes, ranging from simple ions to complex compounds and even microorganisms. The devices should offer sensitivity, speed, reversibility and selectivity. Given these criteria, protein pores, remodeled so that their transmembrane conductances are modulated by the association of specific analytes, are excellent prospects as components of biosensors. RESULTS: Structure-based design and a separation method that employs targeted chemical modification have been used to obtain a heteromeric form of the bacterial pore-forming protein staphylococcal alpha-hemolysin, in which one of the seven subunits contains a binding site for a divalent metal ion, M(II), which serves as a prototypic analyte. The single-channel current of the heteromer in planar bilayers is modulated by nanomolar Zn(II). Other M(II)s modulate the current and produce characteristic signatures. In addition, heteromers containing more than one mutant subunit exhibit distinct responses to M(II)s Hence, a large collection of responsive pores can be generated through subunit diversity and combinatorial assembly. CONCLUSIONS: Engineered pores have several advantages as potential sensor elements: sensitivity is in the nanomolar range; analyte binding is rapid (diffusion limited in some cases) and reversible; strictly selective binding is not required because single-channel recordings are rich in information; and for a particular analyte, the dissociation rate constant, the extent of channel block and the voltage-dependence of these parameters are distinguishing, while the frequency of partial channel block reflects the analyte concentration. A single sensor element might, therefore, be used to quantitate more than one analyte at once. The approach described here can be generalized for additional analytes.

Bacterial Toxins↗

Activity-guided isolation of constituents of Tephrosia purpurea with the potential to induce the phase II enzyme, quinone reductase.

An isoflavone, 7,4'-dihydroxy-3',5'-dimethoxyisoflavone (1), and a chalcone, (+)-tephropurpurin (2), both novel compounds, as well as six constituents of known structure, (+)-purpurin (3), pongamol (4), lanceolatin B (5), (-)-maackiain (6), (-)-3-hydroxy-4-methoxy-8,9-methylene-dioxypterocarpan (7), and (-)-medicarpin (8), were obtained as active compounds from Tephrosia purpurea, using a bioassay based on the induction of quinone reductase (QR) activity with cultured Hepa 1c1c7 mouse hepatoma cells. Additionally, three inactive compounds of known structure, 3'-methoxydaidzein, desmoxyphyllin B, and 3,9-dihydroxy-8-methoxycoumestan, were isolated and identified. The structure elucidation of compounds 1 and 2 was carried out by spectral data interpretation.

Animals↗

Spontaneous oligomerization of a staphylococcal alpha-hemolysin conformationally constrained by removal of residues that form the transmembrane beta-barrel.

Staphylococcal alpha-hemolysin is a water soluble, monomeric, bacterial exotoxin, which forms heptameric pores in membranes. The rate determining step in assembly is the conversion of a heptameric prepore to the fully assembled pore in which the central glycine-rich domain of each subunit inserts into the membrane to form a 14 strand beta barrel. Barrel formation is accompanied by a conformational change in which each N terminus latches onto an adjacent subunit. In the monomer in solution, the central domain is loosely organized and exposed to solvent. In this study, 25 amino acids of the central domain were removed and replaced with the sequence Asp-Gly, which favors the formation of a type I' beta-turn, to yield a mutant devoid of hemolytic activity. Within minutes after synthesis in the absence of membranes, the mutant polypeptide spontaneously assembled into heptamers, as demonstrated by atomic force microscopy. Limited proteolysis suggested that the N termini of the subunits in the heptamers were in the fully assembled pore conformation rather than the prepore conformation. Based on these findings, the deletion is proposed to constrain the central domain and thereby force the creation of a shortened beta barrel, which in turn induces the additional structural changes that normally accompany pore formation. The truncated pore might make a useful framework for the construction of designed membrane active macromolecules.

Amino Acid Sequence↗

Effect of carboxypeptidase E deficiency on progastrin processing and gastrin messenger ribonucleic acid expression in mice with the fat mutation.

Proforms of gastrointestinal peptides are cleaved at paired basic residues into intermediate forms. Paired basic residues at the C-terminal then are excised by carboxypeptidases before the peptide is amidated. An obese mouse, called Cpe(fat)/Cpe(fat), has a missense mutation in carboxypeptidase E (CPE) with no pancreatic CPE activity and a reduced processing of pancreatic proinsulin to insulin. The purpose of this study was 1) to look for the presence of CPE in the antrum of the stomach, duodenum, and colon in the Cpe(fat)/Cpe(fat) mouse; 2) to determine whether CPE is involved in the processing of progastrin (Pro-G) to its carboxyl-terminal amidated form; and 3) to determine whether a decrease in amidated gastrin results in an up-regulation of stomach gastrin messenger RNA (mRNA) levels. In Cpe(fat)/Cpe(fat) mice, CPE activity was absent in the antrum and colon. In Cpe(fat)/Cpe(fat) mice, amidated gastrin levels were reduced significantly. Levels of the precursor for amidated gastrin (gastrin-Gly-Arg-Arg) were markedly elevated. Gastrin mRNA levels were increased approximately 2-fold over the levels in Cpe(fat)/Cpe(fat) mice. These results indicate that CPE is needed for processing progastrin to gastrin in the stomach and that amidated gastrin exerts an inhibitory feedback effect on gastrin mRNA levels.

Animals↗

[Expression and antagonist role of endothelin and nitric oxide synthase in atherosclerotic plaque].

OBJECTIVE: To study the pathogenetic mechanism of atherosclerotic plaque, the action of mediation and antagonism of endothelin (ET) and nitric oxide synthase (NOS) was investigated. METHODS: In situ hybridization, RT-PCR on endothelin and NOS, cytochemistry on NOS were measured using the rabbit atherosclerosis model and cultured vascular smooth muscle cells (VSMC) from normal rabbit. RESULTS: Transcription of endothelin mRNA increased and transcription of NOS mRNA decreased in astherosclerotic plaque: compared with normal aorta, expression of ET gene in plaque was increased by 1.2 times and the expression of NOS gene was decreased by 22.2%; cytochemistry combined with image pattern analysis showed that ET could inhibit NOS protien synthesis in VSMC; type A receptor antagonist of ET could inhibit the role of ET which causes a decrease of NOS protein in VSMC. CONCLUSION: The imbalance between NOS and ET, namely abnormal increase of ET and/or obvious decrease of NOS, is related to atherosclerotic plaque formation.

Animals↗

[Observation on human embryonic lung fibroblast proliferation mediated by mitogen activated protein kinase].

OBJECTIVE: To study the effect of mitogen activated protein kinase (MAPK) on the proliferation of human embryonic lung fibroblast (HELF) induced by 60Co irradiation and the relationship between MAPK and angiotensin II (A II). METHODS: Cell proliferation was measured with enzyme-labeling method; angiotensin II, MAPK and type I precollagen synthesis as well as the role of sodium nitroprusside on the inhibition of A II were evaluated adopting immunohistochemical technique combined with image analysis after 1-5 Gy 60Co gamma-ray irradiation on the cultured HELF. RESULTS: Irradiation at 1-5 Gy promoted cell proliferation and type I precollagen synthesis; the syntheses of A II and MAPK were also increased in the irradiated cells. Exogenous A II enhanced cell proliferation, but sodium nitroprusside inhibited the action of A II. CONCLUSIONS: HELF proliferation induced by 60Co irradiation is a chain reactive course, in which, A II and MAPK are involved. MAPK may play a role of limiting valve in the signal transduction of cellular proliferation.

Angiotensin II↗

[Further clinical analysis on the prognosis of chronic lymphocytic thyroiditis].

OBJECTIVE AND METHODS: There have been many reports on the incidence of hypothyroidism and thyroid carcinoma in chronic lymphocytic thyroiditis patients, however, the incidence of thyroid carcinoma had been a widely debated issue. Therefore 300 cases of chronic lymphocytic thyroiditis from 1964 to 1995 were reviewed. There were 37 males and 263 females, and 52 had a pathological diagnosis of chronic lymphocytic thyroiditis. RESULTS: Among 300 patients, 2 had coexistent thyroid papillary carcinoma. The original symptom in 64.3% patients was hypothyroidism, and the total incidence of hypothyroidism was 76%. It was also indicated in this study that the occurrence of hypothyroidism in chronic lymphocytic thyroiditis patient was associated with the elevated level of antithyroglobulin antibody, enlargement and tenderness of thyroid gland. CONCLUSION: In our study, as the low incidence of coexisted thyroid carcinoma, with the high incidence of hypothyroidism it seemed to be that the elevated antithyroglobulin antibody could be a more effective factor in the development of hypothyroidism in chronic lymphocytic thyroiditis.

Adolescent↗

[A study of RBC relaxation process by use of resistivity method].

In this paper, the relaxation process of RBC in the suspending medium of medium viscosity was studied with the Erythrocyte Rheometer(Electric Resistive method) developed by ourselves. On the basis of Fricke-Velick conductive theory of RBC suspension, the experimental results were discussed. The results demonstrate that delta R/R0-t curve can really reflect the deformability of RBCs and the viscoelasty of RBCs after their deformation.

Animals↗

[Suppression of transforming growth factor beta 1 on malignant phenotype in HL-60 cells].

OBJECTIVE: To study the effect of transforming growth factor beta 1 on tumor cells. METHOD: HL-60 cells were transfected with transforming growth factor beta 1 expression vector by electroporation. Stable cell clones resistant to G 418 were obtained after 2-3 week growth with the drug-containing medium. A series of malignant phenotype were compared between transfected and untransfected HL 60 cells. RESULTS: The growth speed of HL-60 cells which overexpressed transforming growth factor beta 1 mRNA decreased significantly. Clonigenecity in soft agarase and tumor formation in athymic mice were lower than those untransfected HL-60 cells. CONCLUSION: Suppression effect of transforming growth factor beta 1 on malignant phenotype in HL-60 cells were demonstrated.

Animals↗

[Effects of lead on the release of glutamate neurotransmitter in rat hippocampal slices].

Effects of lead on the release of glutamate neurotransmitter were observed in rat hippocampal slices in vitro to study its neurobiological mechanism of lead-induced impairment in learning and memory function. Results showed that exposure to 3.1 to 50.0 mumol/L of lead could cause a dose-dependent increase in spontaneous release of 3H-DL-glutamic acid in hippocampal slices by 23.2% to 66.2% in the absence of calcium. However, in the presence of calcium, spontaneous release of 3H-DL-glutamic acid decreased by 22.6% to 55.3% with increase of exposure to lead from 1.0 to 50.0 mumol/L, and the release induced by potassium increased by 89.3% to 332.1% with a dose-response relationship. It indicated that exposure to lead could interfere with spontaneous and induced release of glutamate transmitter.

Animals↗

Structure of staphylococcal alpha-hemolysin, a heptameric transmembrane pore.

The structure of the Staphylococcus aureus alpha-hemolysin pore has been determined to 1.9 A resolution. Contained within the mushroom-shaped homo-oligomeric heptamer is a solvent-filled channel, 100 A in length, that runs along the sevenfold axis and ranges from 14 A to 46 A in diameter. The lytic, transmembrane domain comprises the lower half of a 14-strand antiparallel beta barrel, to which each protomer contributes two beta strands, each 65 A long. The interior of the beta barrel is primarily hydrophilic, and the exterior has a hydrophobic belt 28 A wide. The structure proves the heptameric subunit stoichiometry of the alpha-hemolysin oligomer, shows that a glycine-rich and solvent-exposed region of a water-soluble protein can self-assemble to form a transmembrane pore of defined structure, and provides insight into the principles of membrane interaction and transport activity of beta barrel pore-forming toxins.

Amino Acid Sequence↗

Tissue distribution and characterization of soluble and membrane-bound forms of metallocarboxypeptidase D.

Metallocarboxypeptidase D (CPD) is a recently discovered 180-kDa membrane-bound carboxypeptidase E-like enzyme (Song, L. and Fricker, L. D. (1995) J. Biol. Chem. 270, 25007-25013). In the present study, a soluble CPD-like activity has been purified to homogeneity and characterized. On denaturing polyacrylamide gels, the soluble enzyme from bovine pituitary glands appears as two bands of 170 and 135 kDa which are converted to 155 and 115 kDa by endoglycosidase F. Both of the soluble forms of CPD are recognized by an antisera raised against CPD purified from rat brain membranes. The partial N-terminal amino acid sequences of the two soluble forms are identical to each other and to the predicted N terminus of duck gp180. The soluble and membrane forms of CPD have similar pH optima, inhibitor specificities, and kinetic parameters for substrate hydrolysis. CPD-like enzymatic activity is detected in all rat tissues examined, with highest levels in pituitary, brain, and adrenal. Western blot analysis indicates that both soluble and membrane forms of CPD are present in rat brain, heart, liver, and kidney. At least four distinct 100-180-kDa forms of CPD are detected on Western blots, although an antiserum raised against the C-terminal region of rat CPD recognizes only the 180-kDa membrane-bound form. The finding that CPD is widely distributed suggests a broad role for this enzyme in the processing of proteins that transit the secretory pathway.

Animals↗

Cholinergic stimulation of AP-1 and NF kappa B transcription factors is differentially sensitive to oxidative stress in SH-SY5Y neuroblastoma: relationship to phosphoinositide hydrolysis.

Oxidative stress appears to contribute to neuronal dysfunction in a number of neurodegenerative conditions, notably including Alzheimer's disease, in which cholinergic receptor-linked signal transduction activity is severely impaired. To test whether oxidative stress could contribute to deficits in cholinergic signaling, responses to carbachol were measured in human neuroblastoma SH-SY5Y cells exposed to H2O2. DNA binding activities of two transcription factors that are respondent to oxidative conditions, AP-1 and NF kappa B, were measured in nuclear extracts. H2O2 and carbachol individually induced dose- and time-dependent increases in AP-1 and NF kappa B. In contrast, when given together, H2O2 concentration dependently (30-300 microM) inhibited the increase after carbachol in AP-1. Carbachol's stimulation of NF kappa B was not inhibited except with a high concentration (300 microM) of H2O2, which was associated with impaired activation of protein kinase C. Lower concentrations of H2O2 (30-300 microM) inhibited carbachol-induced [3H]phosphoinositide hydrolysis, and this inhibition correlated (r = 0.95) with the inhibition of carbachol-induced AP-1. Activation [3H]phosphoinositide hydrolysis by the calcium ionophore ionomycin was unaffected by H2O2, indicating that phospholipase C and phosphoinositides were impervious to this treatment. In contrast, activation with NaF of G-proteins coupled to phospholipase C was concentration dependently inhibited by H2O2, indicating impaired G-protein function. These effects of H2O2 are similar to signaling impairments reported in Alzheimer's disease brain, which involve deficits in receptor- and G-protein-stimulated phosphoinositide hydrolysis, but not phospholipase C activity. Thus, these findings indicate that oxidative stress may contribute to impaired phosphoinositide signaling in neurological disorders in which oxidative stress occurs, and that oxidative stress can differentially influence transcription factors activated by cholinergic stimulation.

Carbachol↗

Cystamine inhibits human immunodeficiency virus-1 replication in cord blood-derived mononuclear phagocytes and lymphocytes.

The effects of cystamine on the human immunodeficiency virus (HIV-1) expression in cord blood monocytes-derived macrophages (CBMDM) and lymphocytes were investigated. Cystamine suppressed HIV-1 expression in CBMDM and lymphocytes in a concentration-dependent fashion as determined by HIV-1 reverse transcriptase (RT) activity. This inhibitory effect of cystamine occurred with all five HIV-1 strains (both laboratory adopted and fresh isolates) tested in the study. The addition of cystamine to cultures of HIV-1 chronically infected CBMDM also suppressed 80% to 90% of RT activity in comparison with untreated controls. Cystamine also decreased HIV-1 protein expression in CBMDM as determined by indirect immunofluorescence assay. The inhibitory effects of cystamine on HIV-1 did not appear to be caused by toxicity to CBMDM or lymphocytes because there was no change in cell viability or cellular DNA synthesis as evaluated by trypan blue dye exclusion and [3H]-thymidine incorporation at doses of cystamine that inhibit the virus. HIV-1 infected CBMDM or lymphocyte cultures (without cystamine treatment) demonstrated giant syncytium formation or cytopathic effect (CPE), respectively, whereas cystamine-treated cultures lacked the giant syncytia or CPE induced by HIV-1 infection. Thus, these observations indicate that cystamine may have the potential to limit HIV-1 replication in monocytes/macrophages and lymphocytes in vivo and may represent a potentially useful compound in the treatment of pediatric HIV-1 infection and acquired immunodeficiency syndrome.

Antiviral Agents↗

High Ca2+ concentrations induce a low activity mode and reveal Ca2(+)-independent long shut intervals in BK channels from rat muscle.

1. Large-conductance calcium-activated K+ channels (BK channels) often display long closed intervals at higher levels of Ca2+. To gain further insight into possible mechanisms for these intervals, currents were recorded from single BK channels, using the patch clamp technique, from patches of membrane excised from primary cultures of rat skeletal muscle. 2. High intracellular calcium concentrations ([Ca2+]i; 10-1000 microM) induced a low activity mode and revealed isolated long shut intervals. Neither of these phenomena were due to the Ba2+ that typically contaminates reagent grade salts. 3. The low activity mode was characterized by typically single brief open intervals with mean durations of 0.1 ms, separated by long shut intervals with mean durations of 100 ms. The very low open probability of about 0.001 during the low activity mode would make a sojourn to this mode functionally equivalent to a sojourn to an inactive state. The durations of sojourns in the low activity mode were exponentially distributed, with the mean durations ranging from about 1 s in 10 microM Ca(i)2+, to 4.5 s in 1000 microM Ca(i)2+. With increased filtering, the brief open intervals would escape detection so that a sojourn to the low activity mode would appear as a single shut interval. A typical channel spent less than 5% of its time in the low activity mode for [Ca2+]i < 10 microM. This increased to about 30% for [Ca2+]i > 100-1000 microM. A kinetic model with three closed states and two open states could approximate the gating of the low activity mode. 4. The isolated long shut intervals were not from the low activity mode, suggesting a different underlying mechanism. Their frequency of occurrence of about 0.3 s-1 did not increase with increasing [Ca2+]i, indicating that they did not arise from a slow Ca2+ block. Their durations were exponentially distributed, with a mean of 127 ms, which was independent of [Ca2+]i, suggesting that a single Ca(2+)-independent closed state or block underlies the isolated long shut intervals. At higher [Ca2+]i, up to 60% of the shut time could be spent in the isolated long shut intervals. 5. These observations suggest that activation of BK channels by high [Ca2+]i can be limited by sojourns to a low activity mode and also by isolated long shut intervals, two additional phenomena that will have to be accounted for in the gating of BK channels.

Animals↗