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Biomedical subjects

L Cheng

Publications and source records attributed to L Cheng.

At least 325 records · Page 18Linked to original sources

A functional ryanodine-sensitive intracellular Ca2+ store is present in vascular endothelial cells.

The presence of the ryanodine receptor was recently demonstrated in vascular and endocardial endothelium, but its function has not been established. We investigated whether functional ryanodine-sensitive Ca2+ stores are present in cultured endothelial cells from rat aorta (RAECs), human aorta (HAECs), human umbilical vein (HUVECs), and bovine pulmonary artery (BPAECs) and what role these may play in intracellular Ca2+ regulation. Under resting conditions, HAECs, BPAECs, and HUVECs demonstrated a slow increase in intracellular Ca2+ (indexed by indo 1 fluorescence) on exposure to 5 mumol/L ryanodine, whereas RAECs did not. However, after an initial bradykinin exposure in RAECs, ryanodine markedly blunted the rapid increase in Ca2+ on a second exposure to bradykinin. In HUVECs, ryanodine in buffer with 1.5 mmol/L Ca2+ did not inhibit the agonist-sensitive Ca2+ increase, whereas it blunted the rapid increase in Ca2+ on histamine exposure in buffer with 5 mmol/L Ca2+, suggesting that increasing [Ca2+] enhances the binding of ryanodine to its receptor. Thus, functional ryanodine-sensitive Ca2+ stores are present in vascular endothelial cells. These appear to be involved in regulation of Ca2+ storage and release from agonist-sensitive intracellular compartments.

Animals↗

Migration of cultured vascular smooth muscle cells through a basement membrane barrier requires type IV collagenase activity and is inhibited by cellular differentiation.

The migration of vascular smooth muscle cells (VSMCs) from the tunica media to the neointima is a key event in the development and progression of many vascular diseases and a highly predictable consequence of mechanical injury to the blood vessel. In vivo, VSMCs are surrounded by and embedded in a variety of extracellular matrices (ECMs) that must be traversed during migration. One of the principal barriers to cell movement in the intact vessel is the basement membrane (BM) that surrounds each VSMC and separates the VSMC-containing medial cell layer from the endothelium. We have used a Boyden chamber to monitor the ability of VSMCs to degrade a BM barrier as they migrate toward a chemoattractant and to define the role of extracellular proteases in this process. We show that cultured VSMCs can migrate across a BM barrier and that this ability was dependent on the phenotypic state of the cell. VSMCs maintained in a proliferating or "synthetic" state readily migrated across a BM toward a chemoattractant, whereas the migration of serum-starved/differentiated VSMCs was suppressed by > 80% (P < .001). By use of a number of peptides that inhibit matrix metalloproteinase (MMP) activity, the migration of proliferating VSMCs across the BM barrier was inhibited by > 80% (P < .0001), whereas migration that occurred in the absence of the barrier was unaffected. Northern blotting and zymographic analyses indicated that 72-kD type IV collagenase (MMP2) was the principal MMP expressed and secreted by these cells. Accordingly, antisera capable of selectively neutralizing MMP2 activity also inhibited VSMC migration across the barrier without significantly affecting the migration of VSMCs in the absence of the barrier. Finally, MMP2 activity was also regulated by the phenotypic state of the cells in that MMP2 activity expressed by serum-starved/differentiated VSMCs was < 5% of that measured in proliferating VSMCs. Extrapolating to the in vivo situation in which VSMCs reside in an ECM composed of various BM barriers, these results suggest that VSMC migration in vivo may be dependent on MMP2 activity. That activity, in turn, could be regulated by the phenotypic state of VSMCs and increase as these cells undergo the transition from a quiescent and differentiated state to that of a dedifferentiated, proliferating, and motile phenotype after injury to the vessel.

Animals↗

Role of leukemia inhibitory factor and its receptor in mouse primordial germ cell growth.

The pleiotropic cytokine leukemia inhibitory factor (LIF) is able to promote the growth of mouse primordial germ cells (PGCs) in culture. It is unclear whether LIF acts directly on PGCs or indirectly via feeder cells or embryonic somatic cells. To understand the role of LIF in PGC growth, we have carried out molecular and cell culture analyses to investigate the role of both the LIF ligand and its receptor in PGC development. LIF is able to stimulate PGC growth independently of the presence of feeder cells supporting the hypothesis that LIF acts directly on PGCs to promote their growth. We show here that transcripts for the low-affinity LIF receptor (LIFR), an integral component of the functional LIF receptor complex, are expressed in the developing gonad. Fluorescence-activated cell sorter (FACS) analysis, using an anti-LIFR antiserum, demonstrates that LIFR is present on the surface of PGCs, suggesting that PGCs are likely to be a direct target of LIF action in culture. Signalling via LIFR is essential for PGC growth in culture since the anti-LIFR antiserum, which blocks LIF binding to its receptor, abolishes PGC survival in culture. Two LIF-related cytokines, namely oncostatin M and ciliary neurotrophic factor, can also promote PGC growth in culture in addition to LIF. Thus one or more of these LIFR-dependent cytokines may play an important role in PGC development in mice.

Animals↗

The body mass index of Chinese adults in the 1980s.

Patterns and trends in the body composition of Chinese adults are studied with data from the 1982 China Nationwide Nutrition Survey (CNS-82) and the 1989 China Health and Nutrition Survey (CHNS-89). The CNS-82 showed rural inhabitants were approximately 3 kg lighter than urban residents and approximately 2.2 cm shorter. Males were heavier (55.2 +/- 7.4 vs 50.7 +/- 8.0 kg) and taller (165.3 +/- 7.3 and 153.5 +/- 6.3 cm). Using a cut-off for underweight of a body mass index (BMI: kg/m2) < 18.5 and for obesity of > 25, 11.6% and 12.9% of the urban and rural sample were underweight and 9.8% and 6.9% respectively were overweight. The CHNS-89 surveyed 5138 adults aged 20-45 in eight selected provinces. The proportion of underweight in both urban and rural samples declined slightly (approximately 1.3%) but the proportion of obesity increased considerably (4.8% for the urban sample and 2% for the rural one). Increased income was significantly associated with reduced low body mass index (BMI: kg/m2) in the urban sample while, for the rural and overall samples, the opposite was found for obesity. Provincial patterns in energy intake were not associated with the distribution of BMI while occupation was. In particular, government officials and housewives were much more likely to be obese as also were subpopulation groups consuming greater proportions of energy from animal sources. Over 80% of the population fell in the normal BMI range (18.5-25). This may relate to the relatively even distribution of food in China during the past several decades.

Adult↗

[Experimental comparison of the toxicity of radix Aconity Kusnezoffii and processed radix Aconity Kusnezoffii by different methods].

This paper deals with the effects of Radix Aconity Kusnezoffii and Radix Aconity Kusnezoffii processed by a new method of moistening and steaming, and by pharmacopoeial routine on acute toxicity, cardiac rhythm and respiration. The result shows that the Radix Aconity Kusnezoffii processed by new method No 1., which applies moistening in water for 48h and then heating with high pressure steam (68.65kPa, 115 degrees C) for 2h, has the advantages of lower toxicity, and lesser inhibitory effect on cardiac rhythm and respiration.

Animals↗

Characterization of a novel monoclonal antibody against human perforin using transfected cell lines.

The role of perforin in cytotoxicity is controversial. This paper characterizes a novel monoclonal antibody (anti-Phu) against human perforin, using murine cell lines transfected with human perforin cDNA. The antibody specifically stains human perforin in transfected mouse CTLL-2. Anti-Phu blocked granule-mediated haemolysis in an in vitro assay using intact granules isolated from the natural killer (NK)-like human cell line YT, indicating that perforin is a major granule component causing lysis of red blood cells (RBC) in this assay. Inhibition of haemolysis by anti-Phu demonstrated that the antibody binds to undenatured protein as well as fixed perforin molecules. However, the antibody did not inhibit lysis by an allospecific T-cell clone or by YT cells. This could be due to an extremely tight contact between effector and target cell, preventing the antibody from interfering with perforin function by steric hindrance. Physiologically this may reduce lysis of bystander cells. The anti-Phu antibody is a useful tool for further studies of perforin-induced cytotoxicity in vitro and in vivo.

Animals↗

Functional effects of CD30 on a large granular lymphoma cell line, YT. Inhibition of cytotoxicity, regulation of CD28 and IL-2R, and induction of homotypic aggregation.

Studies are described revealing novel regulatory functions for the lymphocyte activation Ag CD30. A new mAb, C10, reactive with YT cells binds to CD30 and induces inhibition of the cytotoxicity of YT for Raji cells. C10 inhibition of cytotoxicity requires several hours preincubation of YT with C10; the antibody has no effect if added directly to YT cytotoxicity assays. CD30 stimulation by C10 down-regulates CD28 expression on YT by > 80% within 48 h. Because CD28 is required for YT cytotoxicity toward Raji cells and other B7/BB1 bearing targets, it is suggested that inhibition of cytotoxicity of YT is mediated by control of CD28 expression and/or signaling via CD30. Accordingly, conjugation of YT with Raji is only slightly affected by CD30-mediated down-regulation of CD28, and perforin mRNA steady state levels are not changed at all. C10 treatment of YT cells additionally down-regulates the expression CD45 and up-regulates IL-2R p55. Moreover, CD30 stimulation by C10 causes homotypic aggregation of YT. Homotypic aggregation is slow, requiring gene transcription, translation, metabolic energy at elevated temperature (37 degrees C), magnesium ions, and an intact cytoskeleton. These studies offer insights into the function of CD30 as a complex regulator of T cells.

Amino Acid Sequence↗

Homogeneous antigen receptor beta-chain genes in cloned CD4- CD8- alpha beta T suppressor cells.

The rearrangements of beta-chain genes of the T cell Ag receptor were examined in 12 CD4- CD8- alpha beta + T cell lines derived from the spleen or thymus of neonatal or adult BALB/c mice. Eleven of the lines were cloned and established from six independent cloning procedures from different mice. Five cloned lines used V beta 9, four cloned lines used V beta 15, and two cloned lines used V beta 7. Nucleotide sequencing of the beta-chain genes showed that clones that used a given V beta were identically rearranged even when they were derived from independent cloning procedures. In the case of V beta 7 and V beta 15 all nucleotides in the V-D-J joining region were in the germ line configuration without N region additions. Rearrangements of the V beta 7, V beta 9, and V beta 15 genes were functional. Each V beta 15 clone also had a homogeneous rearrangement of the V beta 13 gene, which was nonfunctional. The predicted amino acid sequence of the joining regions of the V beta 7, V beta 9, and V beta 15 rearrangements showed homology in four of seven amino acids in the peptide contact region.

Animals↗

Chloroplast thylakoid protein phosphatase reactions are redox-independent and kinetically heterogeneous.

At least eleven thylakoid proteins become phosphorylated under reducing conditions, and redox titration has identified a common midpoint potential of Em = +38 +/- 4 mV, n = 0.95 +/- 0.06. In the presence of the phosphatase inhibitor NaF (10 mM), the redox dependency of phosphorylation is found to be essentially unchanged: Em = +50 +/- 3 mV, n = 1.02 +/- 0.04. Thylakoid membranes were phosphorylated in the light and then incubated at various redox potentials for 15 min in the dark; no redox dependency was observed in the dephosphorylation of any of the 17 bands then distinguishable by autoradiography and phosphorimaging. The phosphoprotein phosphatase reactions can be divided arbitrarily into four kinetic classes: the fastest, class I, includes LHC II; the moderate class II includes D1 and D2; the slow class III includes CP43 and the 9 kDa phosphoprotein; finally, a 19.5 kDa protein exhibited no loss of 32P at all. In separate experiments we measured thylakoid protein dephosphorylation initiated by changing the redox potential from -140 to +200 mV, in the presence or absence of fluoride. In this case the results are consistent with at least two kinetically distinguishable classes of phosphoprotein phosphatase reactions. We conclude that thylakoid protein phosphatase reactions are kinetically heterogeneous and redox-independent. It follows that the redox dependency of thylakoid protein phosphorylation is a property of thylakoid protein kinase reactions. Our observed Em and n values are consistent with a primary site of kinase redox control at the level of PQ/PQ(.)- of the Qi (Qn) site of the cytochrome b6/f complex.

Chloroplasts↗

A small influence of HSP90 levels on the trehalose and heat shock element inductions of the yeast heat shock response.

Heat shock protein (HSP) induction is only one change elicited in yeast by heat shock. Trehalose is also accumulated, while declining intracellular pH stimulates plasma membrane ATPase activity. Recently the trehalose induction was shown to be regulated by levels of HSP70 and, to a lesser extent, HSP104. Another HSP which might contribute to regulation is HSP90, especially as HSP90 forms complexes with heat shock transcription factor and several of the regulatory proteins of eukaryotic cells. This possibility was investigated using isogenic yeast strains with normal, decreased or elevated HSP90. The results show HSP90 levels having a small negative influence over the heat inductions of trehalose and the heat shock element, a minor effect compared with the major regulation exerted by HSP70.

Genotype↗

In vivo promoter activity and transgene expression in mammalian somatic tissues evaluated by using particle bombardment.

The particle bombardment method of gene transfer provides an alternative approach for analysis of in vivo promoter activity and transgene expression. Transient expression of the firefly luciferase gene from five viral and five cellular promoters was assessed after in vivo gene transfer using this method. The relative strengths of these promoters were quantitatively determined in five different rat tissues: skin epidermis, dermis, muscle, liver, and pancreas. Cytomegalovirus immediate early enhancer/promoter activity was consistently the highest in each tissue, whereas other promoters displayed tissue-specific preferences. In liver, the mouse phosphoenolpyruvate carboxykinase and metallothionein promoters were stimulated in vivo by inducing agents at 1 and 5 days posttransfection. In dermis, sustained luciferase activity was observed for over 1.5 years after gene delivery. In vivo transgene expression was also detected in bombarded mouse, rabbit, and rhesus monkey tissues. These results suggest that particle bombardment provides an effective system for studies of in vivo gene transfer and gene therapy.

Animals↗

Ligand-protein electrostatic interactions govern the specificity of retinol- and fatty acid-binding proteins.

Cellular retinol-binding protein II (CRBP-II) and intestinal fatty acid-binding protein (I-FABP) are both expressed in small intestinal enterocytes and exhibit 31% sequence identity. I-FABP binds a single molecule of long-chain fatty acid and forms an ion-pair electrostatic interaction between the cationic side chain of arginine-106 and the anionic fatty acid carboxyl group. In contrast, CRBP-II binds all-trans-retinol or -retinal and contains a glutamine residue in the corresponding position, residue 109. We have characterized and compared the interactions of fatty acids and retinoids with I-FABP, CRBP-II, and two reciprocal mutant proteins. The mutants were designated CRBP-II(Q109R), where glutamine-109 was replaced by arginine, and I-FABP(R106Q), where arginine-106 was replaced by glutamine. As monitored by titration calorimetry and carbon-13 NMR spectroscopy, the fatty acid-binding properties of CRBP-II(Q109R) were found to be essentially identical to those of wild-type I-FABP. Both proteins bound 1 molecule of fatty acid with identical affinities (Kd = 0.2 microM). The enthalpic contribution to the total free energy of binding was large for both proteins: 66% and 87%, respectively. In addition, the carboxyl groups of fatty acids bound to both proteins were solvent-inaccessible. There was little or no change in the ionization state of the bound fatty acid over a wide pH range, as monitored by the chemical shift of the fatty acid carboxyl 13C resonance. Furthermore, the binding of fatty acid to both proteins was accompanied by a selective perturbation of the guanidino 13C resonance of a single arginine residue.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Synaptic loss following removal of serotoninergic fibers in newly hatched and adult chickens.

Neurotransmitters such as serotonin (5HT) may have nontransmitter, trophic-like functions in the developing and adult nervous system. In order to examine this possibility in the avian spinal cord, we have quantified synapse numbers on spinal neurons following treatment with drugs that result in the destruction of 5HT positive axons. Either p-chlorophenylalanine or reserpine was injected into newly hatched or adult chickens. Following treatment for 7 days the density of nonserotoninergic synapses was considerably decreased in the targets of 5HT fibers. By contrast, neither change was observed in the dendritic structures of spinal motoneurons or in the distribution of substance P and enkephalin positive fibers. These data suggest that 5HT may play an important role in the normal increase and maintenance of synapses in developing and adult animals. A lesion of 5HT neurons may not only alter neurochemistry but also alter the general synaptic structures of the brain. While 5HT containing fibers were depleted in a dose-dependent fashion we cannot rule out the possibility that other neurotransmitter systems were depleted at higher dose of PCPA and reserpine.

Animals↗

Particle bombardment-mediated gene transfer and expression in rat brain tissues.

We have previously demonstrated that the particle bombardment method for gene transfer (Accell) provides a new means for transfection of various cell types in culture. In this study we evaluate its application to rat brain systems. Using a luciferase (luc) gene as a reporter, we obtained high levels of transient gene expression in primary cultures of fetal brain tissue. Reduced but significant levels were also detected in adult brain primary cultures. Both neuron and glial cells were transfected using this technique. The transient gene expression level obtained with Accell was at least 100-fold higher than that obtained with three other gene transfer methods. The relative strengths of four cellular and seven viral promoters were also evaluated in these cultures. In vivo gene expression was studied using freshly excised and bombarded fetal brain tissues which were immediately transplanted into caudate or intracortical brain tissues of adult host animals. Assays showed that luciferase activity was present in transplants for up to two months following gene transfer. In vitro and in vivo expression of a rat tyrosine hydroxylase (TH) gene, a candidate gene for treatment of Parkinson's disease, was also detected in this rat brain system. Our results suggest that the particle bombardment gene transfer technology can be employed as an effective method for ex vivo gene transfer into brain tissues.

Animals↗

The effects of mifepristone (RU486) on prostaglandin dehydrogenase in decidual and chorionic tissue in early pregnancy.

Prostaglandin dehydrogenase is the main inactivating enzyme for prostaglandins and therefore controls local levels of prostaglandins. Since there is some evidence that the expression of this enzyme is under progesterone control it is reasonable that one of the effects of antiprogestin is to reduce the concentration of this enzyme and thus increase the effective concentration of prostaglandin within tissue. We have investigated the amount of enzyme activity within decidua and chorionic villi from women receiving the antigestagen mifepristone (RU486) 12, 24 and 36 h prior to surgical abortion, and examined the effect on tissue concentrations of prostaglandin dehydrogenase. Women receiving mifepristone in all groups had a significant reduction in concentration of prostaglandin dehydrogenase enzyme in decidual tissue. There was also a marked reduction in prostaglandin dehydrogenase in decidual cells following RU486, as demonstrated by immunochemical methods. At this stage of pregnancy, prostaglandin dehydrogenase was present in abundance in cytotrophoblast cells of chorionic villi but virtually absent from syncytiotrophoblast. In chorionic villi after RU486 administration in vivo, there were no obvious differences in prostaglandin dehydrogenase distribution or reactivity in the majority of cases.

Abortion, Induced↗