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Biomedical subjects

W Chu

Publications and source records attributed to W Chu.

At least 91 records · Page 5Linked to original sources

Significance of the CAG repeat polymorphism of the androgen receptor gene in prostate cancer progression.

PURPOSE: The CAG repeat polymorphism of the androgen receptor gene has been associated with an increased prostate cancer risk, and the repeat length correlated with cancer stage and grade at presentation. Men with an allele length of </= 18 CAG repeats have a 2-fold increase in risk for high-stage or high-grade prostate cancer, compared with patients with a longer CAG repeat. We examined the significance of the CAG repeat polymorphism of the androgen receptor gene for predicting prostate cancer progression among 318 patients treated by radical prostatectomy for clinically localized prostate cancer between 1987 and 1994. MATERIALS AND METHODS: Leukocyte DNA was collected and genotyping of the CAG repeat polymorphism was performed using a PCR-based direct sequencing method. Risk ratios were calculated for developing biochemical recurrence for patients associated with an allele length of </= 18 CAG repeats, compared with patients with an allele length of >18 CAG repeats, controlling for grade, stage and serum PSA level at diagnosis using Cox proportional hazard modeling. RESULTS: Overall, the CAG repeat allele was not predictive of recurrence; tumor grade, stage and PSA level at diagnosis were the only predictors of recurrence in a multivariate analysis. However, for patients at low risk for recurrence (Gleason score 2 to 6, stage pT2, and PSA </= 10 ng./ml.), the relative risk of recurrence associated with an allele of </= 18 CAG repeats was 8.07 (95% C.I., 2.02 to 32.2, p = 0.004), compared with patients with an allele length of >18 CAG repeats. In contrast, for patients at high risk of recurrence (Gleason score >/= 7, stage pT3/4, or PSA >10 ng./ml.), the relative risk associated with the </= 18 CAG repeat allele was 0.72 (95% C.I., 0.33 to 1.57, p = 0.41), compared with patients with the >18 CAG repeat allele. CONCLUSIONS: The length of the CAG repeat polymorphism of the androgen receptor gene may be important for prostate cancer recurrence among patients who are otherwise at low risk for recurrence after radical prostatectomy. These findings have potential implications for patient selection for adjuvant treatment, and for the development of novel treatments.

Alleles↗

Implementation of an RN/RT-initiated extubation protocol.

Widespread acceptance of the importance of discontinuing ventilator support at the earliest possible opportunity has resulted in a number of efforts to develop a standardized approach to extubation. The implementation of an extubation protocol designed for the medical/surgical intensive care unit of a university-affiliated hospital followed a series of educational sessions that were open to all members of the multidisciplinary team. As part of quality assurance monitoring, data were collected on the first 47 patients who were extubated using these criteria. A clinical outcome was defined as the percentage of patients who required reintubation within 48 hours. The protocol has been well-received by the ICU team and has become an established component of ventilator management.

Clinical Protocols↗

The human antibody response to porcine xenoantigens is encoded by IGHV3-11 and IGHV3-74 IgVH germline progenitors.

Preformed and induced Ab responses present a major immunological barrier to the use of pig organs for human xenotransplantation. We generated IgM and IgG gene libraries established from lymphocytes of patients treated with a bioartificial liver (BAL) containing pig hepatocytes and used these libraries to identify IgVH genes that encode human Ab responses to pig xenoantigens. Genes encoded by the VH3 family are increased in expression in patients following BAL treatment. cDNA libraries representing the VH3 gene family were generated, and the relative frequency of expression of genes used to encode the Ab response was determined at days 0, 10, and 21. Ig genes derived from the IGHV3-11 and IGHV3-74 germline progenitors increase in frequency post-BAL. The IGHV3-11 gene encodes 12% of VH3 cDNA clones expressed as IgM Abs at day 0 and 32.4-39.0% of cDNA clones encoding IgM Abs in two patients at day 10. IGHV3-11 and IGHV3-74 genes encoding IgM Abs in these patients are expressed without evidence of somatic mutation. By day 21, an isotype switch occurs and IGHV3-11 IgVH progenitors encode IgG Abs that demonstrate somatic mutation. We cloned these genes into a phagemid vector, expressed these clones as single-chain Abs, and demonstrated that the IGHV3-11 gene encodes Abs with the ability to bind to the gal alpha (1,3) gal epitope. Our results demonstrate that the xenoantibody response in humans is encoded by IgVH genes restricted to IGHV3-11 and IGHV3-74 germline progenitors. IgM Abs are expressed in germline configuration and IgG Abs demonstrate somatic mutations by day 21.

Adult↗

The IKKbeta subunit of IkappaB kinase (IKK) is essential for nuclear factor kappaB activation and prevention of apoptosis.

The IkappaB kinase (IKK) complex is composed of three subunits, IKKalpha, IKKbeta, and IKKgamma (NEMO). While IKKalpha and IKKbeta are highly similar catalytic subunits, both capable of IkappaB phosphorylation in vitro, IKKgamma is a regulatory subunit. Previous biochemical and genetic analyses have indicated that despite their similar structures and in vitro kinase activities, IKKalpha and IKKbeta have distinct functions. Surprisingly, disruption of the Ikkalpha locus did not abolish activation of IKK by proinflammatory stimuli and resulted in only a small decrease in nuclear factor (NF)-kappaB activation. Now we describe the pathophysiological consequence of disruption of the Ikkbeta locus. IKKbeta-deficient mice die at mid-gestation from uncontrolled liver apoptosis, a phenotype that is remarkably similar to that of mice deficient in both the RelA (p65) and NF-kappaB1 (p50/p105) subunits of NF-kappaB. Accordingly, IKKbeta-deficient cells are defective in activation of IKK and NF-kappaB in response to either tumor necrosis factor alpha or interleukin 1. Thus IKKbeta, but not IKKalpha, plays the major role in IKK activation and induction of NF-kappaB activity. In the absence of IKKbeta, IKKalpha is unresponsive to IKK activators.

Animals↗

p53 gene status and chemosensitivity of childhood acute lymphoblastic leukemia cells to adriamycin.

The role of p53 as a determinant of sensitivity of ten childhood acute lymphoblastic leukemia (ALL) cell lines to Adriamycin (ADR) was investigated. ADR-sensitive cell lines were found to have wild-type (wt) p53, whereas resistant cell lines contained point mutations in the gene. The basal level of wt p53 protein in sensitive cells was lower than that of mutant p53 in resistant cells, however, after ADR treatment a 6- to 20-fold dose-dependent increase in wt p53 was observed, whereas mutant p53 increased only twofold. The percentage of apoptotic cells in ADR-sensitive lines with wt p53 ranged from 43 to 93% following ADR treatment, whereas that in resistant lines with mutant p53 was only 8-13%. The ratio of constitutive levels of Bax/Bcl-2 was significantly higher in cells containing wt p53 than in cells with mutant p53. These results suggest that p53 gene status and the ability of p53 to induce apoptosis may be determinants of sensitivity to ADR in childhood ALL cells.

Antineoplastic Agents↗

Interferons enhance HLA-G mRNA and protein in transfected mouse fibroblasts.

The HLA class Ib gene, HLA-G, has a 16-bp deletion in its Enhancer A/interferon response element (IRE). We used a model system consisting of mouse fibroblasts transfected with 6.0 kb of HLA-G DNA, the S14/8 cells, to test the postulate that this deletion prevents interferons (IFNs) from enhancing transcription. Northern blot hybridization experiments showed that after 48 h of treatment with IFN-alpha, IFN-beta or IFN-gamma, steady-state levels of HLA-G mRNA in the S14/8 cell line were doubled. Proteins were also increased by IFNs as demonstrated in flow cytometry and immunocytochemical experiments that used monoclonal antibodies to all HLA class I antigens (W6/32), HLA-G heavy chains (87G) and light chains (beta2m). Thus, interferons enhance expression of HLA-G and would be expected to improve host defense at the maternal-fetal interface by increasing the ability of maternal immune cells to recognize and destroy infected HLA-G+ cells.

Animals↗

A candidate interferon-gamma activated site (GAS element) in the HLA-G promoter does not bind nuclear proteins.

The HLA-G gene is highly expressed at the maternal-fetal interface, where it is believed to participate in the generation and maintenance of maternal tolerance to the fetal semiallograft. This gene has two elements through which interferon-gamma (IFN-gamma) could act to enhance its rate of transcription, an Enhancer A/ICS region and a candidate IFN-gamma activated site (GAS). In this study we investigated functionality of this candidate HLA-G GAS. Two HLA-G-expressing cell lines were tested, the human myelomonocytic cell line, U937, and a mouse fibroblast cell line, S14/8, which is stably transfected with the full length HLA-G gene. Nuclear proteins from IFN-gamma-treated U937 and S14/8 cells bound the interferon regulatory factor-1 (IRF-1) gene GAS sequence (TTC CCCGAA) but not the HLA-G gene's candidate GAS sequence (TTTCGAGAA). Excess unlabeled HLA-G-GAS oligonucleotide failed to inhibit binding of the IRF-1-GAS using the same nuclear extracts. These data indicate that a sequence in the HLA-G gene which would normally permit cytokine enhancement of gene expression, the GAS element, is nonfunctional. This is also true of another regulatory sequence, the Enhancer A/ICS element, suggesting that defects in IFN-gamma response elements prevent inappropriate up-regulation of HLA-G gene expression at the maternal-fetal interface.

Animals↗

[Studies on gel electrophoresis of soluble protein and two kinds of isodynamic enzyme in hongqu from different producing areas].

OBJECTIVE: To investigate the consanguinity between 12 strains of Monascus(MS 01-12) separated and purified from different samples of Hongqu collected from 12 areas in China and the variant strain of Monascus(MS 18) mutated from M. purpureus. METHOD: Gel electrophoresis of soluble protein, esterase and superoxide dismutase(SOD) was used to study the consanguinity between strains MS 01-12 and the variant strain MS 18. RESULTS: The electrochromatophoreses of soluble protein, esterase and SOD in the 12 strains (MS 01-12) are identical, but in the variant strain MS 18 are remarkably different. The results are consistent with those of morphological studies. CONCLUSION: Strains MS 01-12 are the identical species M. purpureus, but strain MS 18 is different from strains of MS 01-12, or a variant of M. purpureus.

Esterases↗

Thyrotropin releasing hormone analogs: a building block approach to the construction of tetracyclic peptidomimetics.

A building block based approach was used to synthesize a pair of tetracyclic peptidomimetics that constrain all but one of the rotational degrees of freedom of the hypothalamic tripeptide hormone thyroliberin. One of the analogs bound to the thyroliberin endocrine receptor (TRH-R) with an affinity greater than that of an analog without constraints. The tetracyclic peptidomimetics were found to be partial agonists for the TRH-R receptor.

Animals↗

Xenoantibodies to pig endothelium are expressed in germline configuration and share a conserved immunoglobulin VH gene structure with antibodies to common infectious agents.

BACKGROUND: The rejection of pig xenografts in humans is initiated by preformed antibodies that may be related to the natural antibodies that formulate a first line of defense against infectious agents. Immunoglobulin gene variable domains encoding the antibodies that react with similar epitopes expressed on xenoantigens and bacteria may share structurally similar antigen-binding site configurations. METHODS: We sequenced the VH immunoglobulin genes and germline progenitors of two rat monoclonal antibodies that recognize pig xenoantigens. Nucleic and amino acid sequences of these xenoantibodies were compared with immunoglobulin genes encoding antibodies that react with bacteria or viruses. RESULTS AND CONCLUSIONS: VH genes encoding rat anti-pig xenoantibodies are expressed in germline configuration and share structural similarities, including identical amino acids in key antigenic contact sites that define antibody canonical structural groups, with antibodies to infectious agents.

Amino Acid Sequence↗

Soluble HLA-G in human placentas: synthesis in trophoblasts and interferon-gamma-activated macrophages but not placental fibroblasts.

The HLA class Ib antigen, HLA-G, is highly expressed in early gestation placentas where it is believed to modulate maternal-fetal immunological interactions. In this study, soluble isoforms (sHLA-G) encoded by intron 4-retaining transcripts were identified in first trimester placentas by immunohistochemistry using a mAb specific for the C-terminus of sHLA-G. Immunoreactive sHLA-G protein was localized to trophoblast cells and to villous mesenchymal cells with the morphological features of macrophages. Reverse transcriptase polymerase chain reaction analysis which used primers specific for intron 4 and the 3' untranslated region of the HLA-G gene showed that transcripts encoding sHLA-G were present in the trophoblast-derived Jeg-3 cells as well as interferon-gamma-activated myelomonocytic U937 cells but were absent and uninducible in placental fibroblasts. These results indicate that placental sHLA-G is synthesized in trophoblast cells and activated placental macrophages and support the postulate that placenta-derived sHLA-G modulates maternal and fetal immune cell functions during pregnancy.

Amino Acid Sequence↗

Lymphoid markers, activation markers, and adhesion molecules in cutaneous biopsy specimens from HIV+ patients with disease progression. The Military Medical Consortium for the Advancement of Retroviral Research.

BACKGROUND: One important factor in understanding the pathogenesis of human immune deficiency virus (HIV) disease is documenting the patterns of immune dysregulation present in HIV-positive patients. The cells which home to skin are mainly certain subsets of T cells and, as opposed to the peripheral blood, where circulating factors may inhibit terminal phenotypic differentiation, the cutaneous environment potentiates differentiation during cutaneous eruptions. OBJECTIVE: The authors' aim was to characterize the inflammatory dermatoses in biopsy specimens from HIV-positive patients with immunohistochemical stains for lymphoid markers, activation markers, and adhesion molecules and to determine if there was any correlation with the type of dermatosis and the HIV-disease stage. METHODS: Lymphoid and activation markers as well as adhesion molecules were studied on cutaneous biopsy specimens from 96 inflammatory dermatoses in HIV-positive patients. The dermatoses included psoriasiform dermatoses with and without a lichenoid component, perivascular lymphoid dermatoses, perivascular and periadnexal inflammatory dermatoses, spongiotic dermatoses, granulomatous dermatoses, and neutrophilic dermatoses with and without vasculitis. RESULTS: Although there was a decrease in CD4/CD8 ratios in the cutaneous inflammatory dermatoses with progression of the disease, the ratios of CD4/CD8 cells were far higher than those in the peripheral blood. There were also increasing numbers of CD23+ cells and increased E-Selectin expression on endothelial cells from the early stages of disease, with no consistent pattern of ICAM-1 expression on epithelial cells with disease progression. CONCLUSIONS: The expression of lymphoid markers, activation markers, and adhesion molecules in the skin with progression of HIV disease, is consistent with a T helper (Th)1 to Th0/Th2 cytokine pattern of immune dysregulation. This cytokine pattern may be modified by the cytopathic effects of HIV on lymphoid and dendritic populations and by effects of other concurrent infections. Significant numbers of CD4+ T cells in skin infiltrates, with low peripheral CD4 T-cell counts, suggest that the cutaneous T-cell populations may be distinctive.

Antigens, CD↗

Processing of amyloid precursor protein in human primary neuron and astrocyte cultures.

Increased production of amyloid beta peptide (A beta) is highly suspected to play a major role in Alzheimer's disease (AD) pathogenesis. Because A beta deposits in AD senile plaques appear uniquely in the brain and are fairly restricted to humans, we assessed amyloid precursor protein (APP) metabolism in primary cultures of the cell types associated with AD senile plaques: neurons, astrocytes, and microglia. We find that neurons secrete 40% of newly synthesized APP, whereas glia secrete only 10%. Neuronal and astrocytic APP processing generates five C-terminal fragments similar to those observed in human adult brain, of which the most amyloidogenic higher-molecular-weight fragments are more abundant. The level of amyloidogenic 4-kDa A beta exceeds that of nonamyloidogenic 3-kDa A beta in both neurons and astrocytes. In contrast, microglia make more of the smallest C-terminal fragment and no detectable A beta. We conclude that human neurons and astrocytes generate higher levels of amyloidogenic fragments than microglia and favor amyloidogenic processing compared with previously studied culture systems. Therefore, we propose that the higher amyloidogenic processing of APP in neurons and astrocytes, combined with the extended lifespan of individuals, likely promotes AD pathology in aging humans.

Amyloid beta-Protein Precursor↗

Physical and biological characteristics of the antitumor drug actinomycin D analogues derivatized at N-methyl-L-valine residues.

The crystal structure of the DNA-actinomycin D (AMD) complex and a simple molecular modeling study indicated that AMD analogues derivatized at N-methyl-L-valine residues (fifth amino acid residue in the cyclic depsipeptide of AMD) could bind to DNA as strongly as the parent AMD. The analogues in which N-methyl-L-valine residues were replaced with L- and D-forms of N-methylvalines, N-methylthreonines, N-methylphenylalanies, N-methyltyrosines, and N-methyl-O-methyltyrosines have been totally synthesized. The characteristics of binding of the analogues to various DNAs including DNA-1 [d(TATATATGCATATATA)], DNA-2 [d(TATATACGCGTATATA)], DNA-3 [d(ATATATAGCTATATAT)], and DNA-4 [d(ATATATGGCCATATAT)] have been examined by using visible absorption spectrum methods. The association constants calculated from the absorption spectra indicate that the modifications of the N-methyl-L-valine residues in the AMD molecule do affect the DNA binding characteristics of the analogues. The L-aromatic analogues bind slightly better than the L-aliphatic analogues except for binding to DNA-1 (-TGCA-), whereas the D-aliphatic analogues bind consistently better than the D-aromatic analogues. In the L-form analogues, the L-Tyr analogue has the highest overall association constant, whereas the D-Val analogue has the highest association constant among the D-form analogues. In spite of substitution of bulky aromatic groups, the D-aromatic analogues bind to the DNA-1 quite well. However, D-aromatic analogues have significantly reduced their binding capacities to the other DNAs, indicating that the substitution of the D-aromatic residues creates a unique four-base sequence preference (-TGCA-). The RNA polymerase inhibitory activities of the AMD analogues in vivo have been examined using human cells (HeLa). All AMD analogues except for the L-Thr analogues severely inhibit RNA synthesis at relatively low drug concentrations. The D-Val, L-OMT, L-Phe, and D-Phe analogues inhibit RNA synthesis more strongly than the natural antibiotic (AMD itself).

Antibiotics, Antineoplastic↗

Expression of HLA-G in human mononuclear phagocytes and selective induction by IFN-gamma.

In situ hybridization studies have shown that at early but not late stages of gestation, human placental stromal cells, many of which are macrophages (Hofbauer cells), contain HLA-G message. In this study, the HLA-G protein was identified in the macrophage-like stromal cells by immunohistochemistry using the anti-HLA-G mAb, 87G. Expression of the HLA-G gene was then analyzed in macrophage cell lines (U937, HL-60, THP-1) and blood monocytes. HLA-G mRNA identified by using reverse transcriptase PCR was consistent with production of a transcript containing intron 4, which codes for a soluble form of HLA-G. Low levels of HLA-G mRNA were identified in mononuclear phagocytes by Northern blot hybridization, and little if any HLA-G Ag was detectable. By contrast, essentially all of the cells displayed high levels of HLA-B/C H chains detected by the mAb, 4E, and B2m. Treatment of macrophage cell lines and monocytes with IFN-gamma increased steady-state levels of HLA-G mRNA, stimulated higher levels of cell surface and intracellular HLA-G Ag in a dose-dependent manner, and increased the proportions of HLA-G relative to HLA-B/C. INF-alpha and IFN-beta enhanced steady-state levels of HLA-G mRNA and in some lines modestly increased the numbers of weakly positive cells but were poor inducers of cell-surface and intracellular HLA-G and did not increase HLA-G relative to HLA-B/C. Thus, mononuclear phagocytes express low levels of HLA-G mRNA and protein, and IFN-gamma selectively enhances expression of this HLA class Ib gene relative to HLA class Ia, which could influence the repertoire of peptides presented during embryogenesis as well as during inflammatory situations in adults. Soluble HLA-G might influence both fetal and maternal immune responses.

Adult↗

Developmental role of fatty acid-binding proteins in mouse brain.

While the functions of the cytoplasmic fatty acid-binding proteins (FABPs) are not well defined, one possibility in neural tissue is in establishing and maintaining the high levels of polyunsaturated fatty acids in membrane lipids characteristic of this tissue and thought essential for normal function. We investigated the reactivity of a protein in developing mouse brain to antiserum prepared against rat heart (H)-FABP. By immunoblot analysis, levels of H-FABP in brain were nearly undetectable until fetal day 17-19, after which levels increased until at least postnatal day 14. Levels of H-FABP were lower in the adult mouse brain, suggesting a function for the protein during differentiation of neural tissue. In immunohistochemical studies with postnatal day 14 mouse brain, the most intensely stained area was the choroid plexus. H-FABP also localized to regions of the somatosensory cortex and to the spinal trigeminal nucleus. In addition, H-FABP was present in the thalamus, entorhinal and piriform cortex, and throughout the pontine and medullary nuclei. Tracts related to the auditory system, including ventral cochlear nucleus and lateral lemniscus, also were H-FABP-positive. In cerebellum, the molecular layer was heavily labeled in cells and processes; in the granule cell layer, there was punctate staining suggestive of mossy fiber terminals. Small cells adjacent to Purkinje cells were intensely stained, while the Purkinje cells were negative. We conclude that H-FABP in brain participates in neurite formation and synapse maturation, and may be related to the similar pattern of expression of GABA related markers.

Amino Acid Sequence↗

Bradykinin potentiates acetylcholine induced responses in native endothelial cells from rabbit aorta.

Membrane potential and intracellular [Ca2+] were measured in freshly isolated rabbit aortic endothelial cells. Acetylcholine (10 microM) induced transient membrane hyperpolarization and increased [Ca2+]i. Bradykinin (4 microM) had no direct effect on membrane potential or [Ca2+]i on its own, but potentiated the subsequent ACh response. It changed the usual transient ACh response to a maintained hyperpolarization. The maintained hyperpolarization was blocked by NiCl2 and TEA, indicating an involvement of receptor-operated-Ca2+ channel and Ca2+ -dependent K+ -channel activity. This potentiating effect on bradykinin in isolated cells was confirmed in organ bath studies using isolated aortic rings.

Acetylcholine↗