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Biomedical subjects

L Cheng

Publications and source records attributed to L Cheng.

At least 307 records · Page 17Linked to original sources

Infectivity and risk factors of hepatitis C virus transmission through sexual contact.

HCV infection among heterosexuals with multiple partners and family members of patients with hepatitis C, and HCV RNA in the body fluid of these patients were investigated. The results showed that the HCV infection in heterosexuals with multiple partners, which was related to sexual activity, was much higher than that of healthy pregnant women. The HCV RNA in the saliva, semen or vaginal discharge of patients with hepatitis C was at detectable level. Among the patient's relatives, none of the children but 2 spouses were found to be infected with HCV. We concluded that sexual contact might play some role in HCV transmission.

Adolescent↗

Calcitonin gene-related peptide promotes Schwann cell proliferation.

Schwann cells in culture divide in response to defined mitogens such as PDGF and glial growth factor (GGF), but proliferation is greatly enhanced if agents such as forskolin, which increases Schwann cell intracellular cAMP, are added at the same time as PDGF or GGF (Davis, J. B., and P. Stroobant. 1990. J. Cell Biol. 110:1353-1360). The effect of forskolin is probably due to an increase in numbers of PDGF receptors (Weinmaster, G., and G. Lemke. 1990. EMBO (Eur. Mol. Biol. Organ.) J. 9:915-920. Neuropeptides and beta-adrenergic agonists have been reported to have no effect on potentiating the mitogenic response of either PDGF or GGF. We show that the neuropeptide calcitonin gene-related peptide (CGRP) increases Schwann cell cAMP levels, but the cells rapidly desensitize. We therefore stimulated the cells in pulsatile fashion to partly overcome the effects of desensitization and show that CGRP can synergize with PDGF to stimulate Schwann cell proliferation, and that CGRP is as effective as forskolin in the pulsatile regime. CGRP is a good substrate for the neutral endopeptidase 24.11. Schwann cells in vivo have this protease on their surface, so the action of CGRP could be terminated by this enzyme and desensitization prevented. We therefore suggest that CGRP may play an important role in stimulating Schwann cell proliferation by regulating the response of mitogenic factors such as PDGF.

Animals↗

Programmed cell death by default in embryonic cells, fibroblasts, and cancer cells.

We recently proposed that most mammalian cells constitutively express all of the proteins required to undergo programmed cell death (PCD) and undergo PCD unless continuously signaled by other cells not to. Although some cells have been shown to work this way, the vast majority of cell types remain to be tested. Here we tested purified fibroblasts isolated from developing or adult rat sciatic nerve, a mixture of cell types isolated from normal or p53-null mouse embryos, an immortalized rat fibroblast cell line, and a number of cancer cell lines. We found the following: 1) All of these cells undergo PCD when cultured at low cell density in the absence of serum and exogenous signaling molecules but can be rescued by serum or specific growth factors, suggesting that they need extracellular signals to avoid PCD. (2) The mixed cell types dissociated from normal mouse embryos can only support one another's survival in culture if they are in aggregates, suggesting that cell survival in embryos may depend on short-range signals. (3) Some cancer cells secrete factors that support their own survival. (4) The survival requirements of a human leukemia cell line change when the cells differentiate. (5) All of the cells studied can undergo PCD in the presence of cycloheximide, suggesting that they constitutively express all of the protein components required to execute the death program.

Animals↗

Pituitary adenomas complicating cardiac surgery: summary and review of 11 cases.

From the literature and our own experience, 11 cases of hemorrhage or infarction of a pituitary adenoma associated with cardiac surgery have been identified over a 13-year period. Males outnumbered females by 10 to 1. Symptoms observed were headache, lethargy, confusion, obtundation, unilateral ptosis, meiosis, and opthalmoplegia involving cranial nerves III, IV, and VI, visual field deficits, and hemiparesis. Diagnosis in most recent cases has been confirmed with computerized tomography or magnetic resonance imaging. All patients received adrenocortical steroid therapy initially. Eight patients underwent transsphenoidal hypophysectomy and all survived. One patient underwent decompression craniotomy and died. Intracranial surgery was deferred in 1 patient who survived and in another who died of a massive stroke. Residual neurological deficits were noted to be either absent, minimal, or resolving in 7 of the 9 patients who survived their initial hospitalization. While numerous mechanisms have been proposed to explain the hemorrhage and necrosis of a pituitary adenoma during heart surgery, no direct cause has been clearly identified. Surgical treatment is commonly necessary since untreated pituitary apoplexy is often fatal. Transsphenoidal hypophysectomy with decompression is the preferred method of treatment with a low perioperative mortality and fairly good long-term prognosis.

Adenoma↗

Regulation of the Nur77 orphan steroid receptor in activation-induced apoptosis.

T-cell receptor (TCR)-mediated apoptosis in immature thymocytes and T-cell hybridomas is calcium dependent and can be inhibited by cyclosporin A (CsA). Induction of the orphan steroid receptor Nur77 (NGFI-B) is required for activation-induced apoptosis. Here, we examined the regulation of Nur77 expression, in response to apoptotic TCR signals, which consists of kinase C and calcium pathways. We show that the major control of Nur77 induction is mediated by the calcium signaling pathway. In contrast, protein kinase C signals induce only a low level of Nur77 activity. Nur77 promoter activity parallels its protein levels. CsA decreases both Nur77 protein levels and promoter activity, and the kinetics of CsA inhibition of apoptosis correlates with a decrease in Nur77 protein levels. TCR signals and kinase C signals result in a similar level of Nur77 protein phosphorylation but mediate differential transactivation activity of Nur77. In addition, Nur77 promoter deletion analysis revealed two RSRF (related to serum-responsive factor) binding sites, which can confer calcium and CsA sensitivity on a heterologous promoter. Taken together, our data suggest that the levels of transcriptional induction of Nur77 play an important role during activation-induced apoptosis and that calcium signals regulate a novel CsA-sensitive nuclear factor required for Nur77 transcription in T cells.

Animals↗

Identification of human and mouse p19, a novel CDK4 and CDK6 inhibitor with homology to p16ink4.

The cell cycle in mammalian cells is regulated by a series of cyclins and cyclin-dependent kinases (CDKs). The G1/S checkpoint is mainly dictated by the kinase activities of the cyclin D-CDK4 and/or cyclin D-CDK6 complex and the cyclin E-CDK2 complex. These G1 kinases can in turn be regulated by cell cycle inhibitors, which may cause the cells to arrest at the G1 phase. In T-cell hybridomas, addition of anti-T-cell receptor antibody results not only in G1 arrest but also in apoptosis. In searching for a protein(s) which might interact with Nur77, an orphan steroid receptor required for activation-induced apoptosis of T-cell hybridomas, we have cloned a novel human and mouse CDK inhibitor, p19. The deduced p19 amino acid sequence consists of four ankyrin repeats with 48% identity to p16. The human p19 gene is located on chromosome 19p13, distinct from the positions of p18, p16, and p15. Its mRNA is expressed in all cell types examined. The p19 fusion protein can associate in vitro with CDK4 but not with CDK2, CDC2, or cyclin A, B, E, or D1 to D3. Addition of p19 protein can lead to inhibition of the in vitro kinase activity of cyclin D-CDK4 but not that of cyclin E-CDK2. In T-cell hybridoma DO11.10, p19 was found in association with CDK4 and CDK6 in vivo, although its association with Nur77 is not clear at this point. Thus, p19 is a novel CDK inhibitor which may play a role in the cell cycle regulation of T cells.

Amino Acid Sequence↗

Taxol inhibits neointimal smooth muscle cell accumulation after angioplasty in the rat.

Despite significant improvements in the primary success rate of the medical and surgical treatments for atherosclerotic disease, including angioplasty, bypass grafting, and endarterectomy, secondary failure due to late restenosis continues to occur in 30-50% of individuals. Restenosis and the later stages in atherosclerotic lesions are due to a complex series of fibroproliferative responses to vascular injury involving potent growth-regulatory molecules (such as platelet-derived growth factor and basic fibroblast growth factor) and resulting in vascular smooth muscle cell (VSMC) proliferation, migration, and neointimal accumulation. We show here, based on experiments with both taxol and deuterium oxide, that microtubules are necessary for VSMCs to undergo the multiple transformations contributing to the development of the neointimal fibroproliferative lesion. Taxol was found to interfere both with platelet-derived growth factor-stimulated VSMC migration and with VSMC migration and with VSMC proliferation, at nanomolar levels in vitro. In vivo, taxol prevented medial VSMC proliferation and the neointimal VSMC accumulation in the rat carotid artery after balloon dilatation and endothelial denudation injury. This effect occurred at plasma levels approximately two orders of magnitude lower than that used clinically to treat human malignancy (peak levels achieved in this model were approximately 50-60 nM). Taxol may therefore be of therapeutic value in preventing human restenosis with minimal toxicity.

Angioplasty, Balloon↗

Analysis of perforin expression in human peripheral blood lymphocytes, CD56+ natural killer cell subsets and its induction by interleukin-2.

In this study new evidence is obtained by the use of an anti human perforin monoclonal antibody (mAb), anti P1, concerning the number of perforin positive cells in human peripheral blood lymphocytes (PBL). It is shown that about 23% of PBL is perforin positive and that this percent increases by the treatment in RPMI 1640 medium alone to 33% and with 1000 U r hIL-2 to 46%. Assessment of the cytotoxicity potential of NK cells from PBL, freshly isolated and treated, against tumor cell line K562 by the standard NK cell 4-hr 51-chromium release assay, indicates a significant enhancement in their cytotoxicity. By FACStar sorting and analysis of the CD56+ NK cell population new evidence is obtained which shows that about 25-30% of this population represents the CD56bright+ subset, while 70-75% represents the CD56dim+ subset. As the two subsets were shown to differ functionally they were stained with anti P1 for the evaluation of perforin content and it was found that both of them are positive for perforin from 97-99%, suggesting that the functional difference is not due to perforin content. In this sense, as NK cells are constitutively positive for perforin, the increase in the cytotoxicity of NK cells induced by IL-2 is most likely due to the synthesis and expression of various adhesion molecules on NK cells which increase their cytotoxic potential, as well as, that the detected increase in the number of perforin positive cells by this lymphokine does not belong to NK, but to the T lymphocyte population. The data obtained in this study indicate the possibility of perforin detection in human lymphocytes by an anti human perforin mAb and the change in the number of perforin positive cells after stimulation with interleukin-2.

Antibodies, Monoclonal↗

Heterogeneity of red blood cell velocity in skeletal muscle decreases with increased flow.

OBJECTIVE: Effective material exchange between blood and tissue depends on the heterogeneity of microvascular flow. The objective was to address inconsistencies between intravital studies regarding this dependency. We tested the hypothesis that heterogeneity of red blood cell velocity (VRBC) in capillary beds varies with the strength of metabolic stimulus and with capillary bed geometry. METHODS: We used videomicroscopy to measure VRBC in a bed of 10-24 capillaries at the surface of extensor digitorum longus (EDL) muscle in anesthetized rats. The coefficient of variation (CV = standard deviation/mean; an index of spatial heterogeneity) was computed in the same bed before and after (i) 1, 2, 4, or 8 Hz supramaximal muscle contraction or (ii) adenosine superfusion (10(-7)-10(-3) M). Beds with or without arteriolar-venular capillary shunts were used. RESULTS: Although control VRBC differed between beds (shunt: 232 microns/s; no shunt: 130 microns/s), the percentage increases in postcontraction VRBC did not (range: 111-326%). In both beds, control CV varied greatly (overall range: 28-117%) and 2-8 Hz muscle contractions reduced CV significantly by 25%. Similar results were obtained for adenosine. In confirmatory experiments using the rat cremaster muscle, contractions (4 Hz) and adenosine (10(-4) M) also reduced CV. Based on all data, CV = 63-0.022 VRBC (r = 0.82, P < 0.001). CONCLUSIONS: The heterogeneity of VRBC decreased with metabolic stress, regardless of capillary bed geometry. We propose that both the large variability in control CV and the relatively shallow dependence of CV on velocity could be responsible for the present inconsistencies between intravital studies.

Analysis of Variance↗

Estrogen receptors in gallbladder cancer: detection by an improved immunohistochemical assay.

Although gallbladder carcinoma is the most common malignancy of the extrahepatic biliary tract, patients with this disease have a very poor prognosis. Previous investigations have documented the presence of estrogen receptors (ER) in gallbladder cancers for possible therapeutic benefit; however, the methods used for detection were largely imprecise, which led to a wide range of results. In light of these unclear results obtained with inferior techniques, we have attempted to determine more accurately the prevalence of ER positivity in gallbladder cancer using an improved, more specific immunohistochemical assay (IHA) for estrogen receptors. The IHA, which used a pronase pretreatment and the H222 monoclonal antibody, was performed on archival tumor specimens of 25 patients. There were no strongly or moderately positive specimens. Three specimens stained weakly positive, and 22 specimens (88%) were negative. The three specimens that were weakly positive showed neither statistical significance nor any identifiable trends with respect to patient sex, tumor stage, or histologic type. We conclude that, contrary to previous reports, weak estrogen receptor staining occurs in a very small percentage of gallbladder carcinomas. Furthermore, although the minimum concentration of ER required for potential therapeutic benefit is unclear, the addition of hormonal therapy in patients with gallbladder cancer is not likely to alter the outcome of this malignancy.

Aged↗

Effects of dehydroepiandrosterone in immunosuppressed adult mice infected with Cryptosporidium parvum.

Cryptosporidiosis is a diarrheal disease in humans and other animals caused by the coccidian parasite, Cryptosporidium parvum. This study was undertaken to determine the effectiveness of dehydroepiandrosterone (DHEA) in reducing C. parvum infections in immunosuppressed adult C57BL/6N mice and to identify the immunomodulatory effects of DHEA that result in increased resistance to cryptosporidiosis. Dexamethasone-immunosuppressed mice were readily infected with C. parvum following orogastric intubation with 10(6) oocysts/mouse. DHEA treatment of these mice significantly reduced (P < 0.01) both fecal oocyst shedding and parasite colonization of the ilea. Immunosuppressed mice treated with DHEA had more splenic total T cells, CD4+ T cells, and CD8+ T cells than immunosuppressed mice that were not treated, but the differences were not always significant. Moreover, nonimmunosuppressed mice treated with DHEA had significantly more (P < 0.05) splenic total T cells, CD4+ T cells, and total B cells than nonimmunosuppressed mice that did not receive DHEA. Of particular interest was the significantly larger (P < 0.05) number of CD8+ T cells in immunosuppressed, C. parvum-infected, DHEA-treated mice compared with the same mice that were not treated. Up-regulation of the immune system by exogenous DHEA may be useful in the treatment and palliation of cryptosporidiosis.

Animals↗

Measurement of subnanomolar retinoic acid binding affinities for cellular retinoic acid binding proteins by fluorometric titration.

Cellular retinoic acid binding protein I (CRABP-I) and cellular retinoic acid binding protein II (CRABP-II) are small, cytoplasmic proteins which bind all-trans-retinoic acid with high affinity. Both of these proteins belong to a family of intracellular proteins which bind amphiphilic lipids, including fatty acids, bile salts, and retinoids. Because CRABP-I and -II exhibit different tissue distributions and differential transcriptional regulation, they are proposed to serve different functions. The binding properties of mouse CRABP-I and -II purified from Escherichia coli were examined to further understand their role in intracellular retinoic acid processing. Fluorescence titrations were performed using nanomolar protein concentrations, near the obtained dissociation constants, and analyzed by direct mathematical fitting to raw data, in order to extend the range and accuracy of binding constant determination. The apparent dissociation constants, K'd, of mouse CRABP-I and CRABP-II binding all-trans-retinoic acid were determined to be 0.4 +/- 0.3 nM and 2 +/- 1 nM respectively, stronger binding than previously reported. The K'd of mCRABP-I and mCRABP-II complexing with acitretin, a pharmacologically active synthetic retinoid used in the treatment of psoriasis, was 3 +/- 1 nM and 15 +/- 11 nM. Both CRABPs bound 9-cis-retinoic acid with a K'd of roughly 200 nM, and neither exhibited significant binding of 13-cis-retinoic acid.

Acitretin↗

Substrate specificity and kinetics of thylakoid phosphoprotein phosphatase reactions.

A synthetic 15-amino-acid phosphopeptide analogue of an N-terminal phosphorylated segment of LHC II was found to inhibit dephosphorylation not only of phospho-LHC II but of all other thylakoid phosphoproteins resolved by phosphorimaging. The results suggest that structural features required for recognition of the phosphoprotein phosphatase are common to different thylakoid phosphoproteins as well as to the phosphopeptide itself: at least one thylakoid phosphoprotein phosphatase exhibits a broad substrate specificity. Dephosphorylation reaction rates of all 13 thylakoid phosphoproteins were determined, and the dephosphorylation half-times were found to range from 7 min to more than 180 min. Most of the phosphoprotein dephosphorylation reactions were partially inhibited by NaF, and were insensitive to antimycin A and okadaic acid. Nevertheless, both antimycin A and NaF stimulated the phosphorylation of LHC II and 9 kDa protein. Possible reasons for differences in sensitivity to these inhibitors are discussed.

Amino Acid Sequence↗

Characterization of the ligand binding domain of human retinoid X receptor alpha expressed in Escherichia coli.

In order to study the structural details of ligand protein interactions of the human retinoid X receptor alpha (hRXR alpha), the DEF and EF domains of the receptor were expressed as glutathione S-transferase (GST) fusion proteins in Escherichia coli. The fusion proteins were expressed at high levels and were affinity-purified by chromatography over glutathione-agarose. The DEF and EF domains were cleaved from the fusion proteins by digestion with thrombin. Retinoic acid binding was quantitated using two different methods. The apparent dissociation constant (Kd) and the stoichiometry of 9-cis-retinoic acid binding were performed by monitoring quenching of protein fluorescence. To directly compare the binding affinity of the E. coli-derived truncated hRXR alpha with full-length hRXR alpha expressed in transiently transfected COS cells, Scatchard analyses of [3H]9-cis-retinoic acid binding assays were performed. Both methods of analysis indicate that while the cleaved DEF peptide bound 9-cis-retinoic acid tightly, the cleaved EF peptide exhibited variable binding activity between preparations. By fluorimetric analysis, the Kd of the cleaved DEF peptide was estimated to be 3 +/- 0.5 nM with a stoichiometry of 1:1.1 +/- 0.1. By Scatchard analysis, the Kd values for [3H]9-cis-retinoic acid to the GST-hRXR alpha (DEF) peptide and the cleaved DEF peptide were estimated to be 1.8 nM and 5.6 nM, respectively. The estimated molecular mass from high speed sedimentation equilibrium experiments was 36 +/- 2 kDa for the apo-DEF peptide alone and 38 +/- 3 kDa for the holo-DEF peptide complexed with 9-cis-retinoic acid. This suggests that the recombinant ligand binding domain was predominantly in the monomer form. However, dimers of the cleaved DEF peptides were detected in chemical cross-linking experiments both in the presence and absence of 9-cis-retinoic acid. Since the purified E. coli-derived truncated hRXR alpha DEF peptide appears to fully retain its ligand binding activity, it should provide a useful model system for further structural analysis of ligand-protein interactions.

Amino Acid Sequence↗

Polyubiquitin gene expression contributes to oxidative stress resistance in respiratory yeast (Saccharomyces cerevisiae).

UBI4, the polyubiquitin gene of Saccharomyces cerevisiae, is expressed at a low level in vegetative cells, yet induced strongly in response to starvation, cadmium, DNA-damaging agents and heat shock. UBI4 is also expressed at a higher basal level in cells growing by respiration as compared to glucose-repressed cells growing by fermentation. This higher UBI4 expression of respiratory cultures probably helps to counteract the greater oxidative stress of respiratory growth. The effects of inactivating UBI4 on high temperature viability are more marked with respiratory cultures. Also loss of UBI4 leads to a considerably increased rate of killing of respiring cells by hydrogen peroxide, whereas the same gene inactivation has relatively little effect on the peroxide sensitivity of cells in which mitochondrial functions are repressed. This is the first study to reveal that ubiquitin levels in cells can influence their ability to withstand oxidative stress.

Biopolymers↗

Increase in rat aortic endothelial free calcium mediated by metabolically sensitive calcium release from endoplasmic reticulum.

OBJECTIVE: The aim was to examine the relationship between cellular metabolism and intracellular [Ca2+] in vascular endothelial cells, focusing on the timing, mechanism, and reversibility of intracellular [Ca2+] changes resulting from ATP depletion. METHODS: Cultured rat aortic endothelial monolayers were loaded with indo-1 and exposed for 30 min to: (1) glucose-free buffer, (2) 10 mM deoxyglucose or iodoacetic acid (0.1 or 2.5 mM) to inhibit glycolysis, or (3) 2 mM NaCN to inhibit oxidative phosphorylation with or without glucose. In other experiments, the pH sensitive fluorescent indicator SNARF-1 was used to assess the relationship between observed changes in [Ca2+] and pH. RESULTS: While glucose deprivation resulted in a minor increase in [Ca2+], glycolytic inhibition resulted in a larger, slowly developing, sustained increase in [Ca2+]. Endothelial [Ca2+] was not affected by inhibition of oxidative phosphorylation alone, whereas a rapid, sustained, and largely reversible increase (approximately 102 nM) occurred when NaCN exposure was combined with glucose deprivation. The increase in [Ca2+] during glucose-free NaCN exposure was not altered when calcium influx was prevented by removal of extracellular calcium, but was abolished following depletion of an intracellular calcium store by the endoplasmic reticular Ca(2+)-ATPase inhibitor thapsigargin. In SNARF-1 loaded monolayers, inhibition of glycolysis with iodoacetic acid decreased intracellular pH by 0.33(SEM 0.10) units whereas inhibition of oxidative phosphorylation in the absence of glucose increased intracellular pH by 0.17(0.05) units. While these divergent pH changes were noted, [Ca2+] increased in both groups. CONCLUSIONS: A metabolically sensitive endoplasmic reticular calcium store is rapidly and reversibly released in vascular endothelial cells. Endothelial [Ca2+] is shown to be dependent on glycolytic energy production. In the endothelial cell, brief periods of inhibition of oxidative phosphorylation in the absence of glucose rapidly affect intracellular calcium pools rather than leading to calcium influx due to non-specific cellular damage. Effects on intracellular pH alone cannot account for the changes in [Ca2+].

Adenosine Triphosphate↗

Weak acid preservatives block the heat shock response and heat-shock-element-directed lacZ expression of low pH Saccharomyces cerevisiae cultures, an inhibitory action partially relieved by respiratory deficiency.

Inhibition of microbial growth by weak acid preservatives increases with medium acidification, since these agents enter cells in the undissociated state. Many of the effects of these acids are due to the cytoplasmic acidification they cause as they dissociate in the higher pH environment of the cytosol. Sorbic and benzoic acids, two widely used preservatives, were found to exert pronounced effects on the heat shock response and thermotolerance of Saccharomyces cerevisiae. These effects were strongly influenced by the pH of the culture medium. In low pH cultures sorbate inhibited the induction of thermotolerance by sublethal heat shock, causing strong induction of respiratory-deficient petites among the survivors of heat treatment. However, when the culture pH was above 5.5 sorbate acted as a powerful chemical inducer of thermotolerance in the absence of any sublethal heat treatment. Sorbate and benzoate also inhibited heat induction of the major heat shock proteins in low pH yeast cultures. This appears to result from lack of induction of the heat shock element (HSE) promoter sequence since sorbate prevented heat induction of a HSE-lacZ fusion at low pH. The uncoupler carbonyl cyanide m-chlorophenylhydrazone (CCCP) and the plasma-membrane-ATPase inhibitor diethylstilboestrol were identified as additional inhibitors of heat induction of heat shock proteins. Numerous chemicals induce the heat shock response in the absence of heat stress, but sorbate, benzoate, CCCP and diethylstilboestrol are the first compounds shown to act as selective inhibitors of heat-induced protein expression in yeast. In the presence of sorbate concentrations which, at low pH, totally inhibit both the heat shock response and growth of cells competent in respiration, respiratory-deficient petites still retain a limited capacity for growth and for heat induction of heat shock proteins. This restoration of a response to heat shock in acidified sorbate-treated cultures of petites might contribute to their higher capacity for growth in the presence of sorbate.

Adaptation, Physiological↗