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Biomedical subjects

Z Zhou

Publications and source records attributed to Z Zhou.

At least 73 records · Page 4Linked to original sources

Cloning and characterization of a novel human leptin receptor overlapping transcript-like 1 gene (LEPROTL1).

A new full-length cDNA encoding a novel protein was isolated from our human fetal brain cDNA library. The cDNA consists of 2701 bp and has a putative open reading frame encoding 131 amino acids which possesses a JAK binding site (Pro(46)-Ile-Pro(48) which is preceded by a cluster of hydrophobic residues) and is highly homologous to the leptin receptor gene-related protein (OB-RGRP). Northern blot analysis showed that this new gene is widely expressed in human tissues and radiation hybrid mapping placed the gene to human chromosome 8p21.1-8p21.2.

Amino Acid Sequence↗

CED-1 is a transmembrane receptor that mediates cell corpse engulfment in C. elegans.

We cloned the C. elegans gene ced-1, which is required for the engulfment of cells undergoing programmed cell death. ced-1 encodes a transmembrane protein similar to human SREC (Scavenger Receptor from Endothelial Cells). We showed that ced-1 is expressed in and functions in engulfing cells. The CED-1 protein localizes to cell membranes and clusters around neighboring cell corpses. CED-1 failed to cluster around cell corpses in mutants defective in the engulfment gene ced-7. Motifs in the intracellular domain of CED-1 known to interact with PTB and SH2 domains were necessary for engulfment but not for clustering. Our results indicate that CED-1 is a cell surface phagocytic receptor that recognizes cell corpses. We suggest that the ABC transporter CED-7 promotes cell corpse recognition by CED-1, possibly by exposing a phospholipid ligand on the surfaces of cell corpses.

ATP-Binding Cassette Transporters↗

Oxygen requirement for denitrification by the fungus Fusarium oxysporum.

The effects of dioxygen (O2) on the denitrification activity of the fungus Fusarium oxysporum MT-811 in fed-batch culture in a stirred jar fermentor were examined. The results revealed that fungal denitrifying activity requires a minimal amount of O2 for induction, which is repressed by excess O2. The optimal O2 supply differed between the denitrification substrates : 690 micromol O2 x h(-1) (g dry cell wt.)(-1) for nitrate (NO3-) and about 250 micromol O2 x h(-1) (g dry cell wt.)(-1) for nitrite (NO2-). The reduction of NO3- required more O2 than that of NO2- . With an optimal O2 supply, 80% and 52% of nitrogen atoms in NO3- and NO2-, respectively, were recovered as the denitrification product N2O. These features of F. oxysporum differ from those of bacterial denitrifiers that work exclusively under anoxic conditions. The denitrification activity of F. oxysporum MT-811 mutants with impaired NO3- assimilation was about double that of the wild-type strain, suggesting competition for the substrate between assimilatory and dissimilatory types of NO3- reduction. These results showed that denitrification by F. oxysporum has unique features, namely, a minimal O2 requirement and competition with assimilatory NO3-.

Aerobiosis↗

Identification of a new gene product of PKIbeta by HPLC-ESIMS.

An identification method using high-performance liquid chromatography combined with electrospray mass spectrometry (HPLC-ESIMS) has been developed to verify an expressed gene product of kinase inhibitor (PKIbeta). This protein was expressed in this university for the first time from a newly cloned gene in the cDNA library of human fetal brain. The measured MW (8468.9 Da) of PKIbeta-78 was consistent with expectations. The gene product of PKIbeta-78 was monitored by ESIMS to ensure there was no mis-expressed PKIbeta-70 in the process of gene engineering. The peptide mapping of PKIbeta-78 and its partial sequence were, furthermore, determined. By database searching based on the experimental MWs and partial sequences provided, it was verified that this gene product is a new protein. The pseudosubstrate site and leucine-rich site for the function region of PKIbeta-78 are also confirmed.

Amino Acid Sequence↗

Ethanol-induced apoptosis in mouse liver: Fas- and cytochrome c-mediated caspase-3 activation pathway.

Hepatic apoptosis has been shown to occur in both experimental and clinical alcoholic liver disease, but the signaling pathway remains unknown. This study was undertaken to examine specifically the involvement of the upstream signals, Fas and cytochrome c, in alcohol-induced caspase-3 activation and apoptosis in the liver. Male FVB mice were administrated intragastrically a single dose of alcohol at 6 g/kg, which has been shown to represent binge drinking in humans. Hepatic apoptosis was detected by a terminal deoxynucleotidyl transferase dUTP nick-end labeling assay. Active form of caspase-3 was identified by immunoperoxidase staining and confirmed by immunogold labeling and was found to be in the cytosol and nucleus. Enzymic assay further confirmed caspase-3 activation and nucleus localization. Systemic administration of caspase-3 inhibitor, Ac-DEVD-FMK, inhibited caspase-3 activity and abrogated apoptosis. Elevation of cytosolic cytochrome c was found by immunoperoxidase staining, immunogold labeling, and Western blot. Increased Fas ligand expression was detected by immunoperoxidase staining. Intravenous administration of a neutralizing Fas ligand monoclonal antibody resulted in suppression of caspase-3 activation and attenuation of apoptosis, but did not inhibit mitochondrial cytochrome c release. The results thus demonstrate that Fas/Fas ligand system-mediated caspase-3 activation plays a central role in the ethanol-induced hepatic apoptosis.

Animals↗

Health-related quality of life among adults with symptoms of overactive bladder: results from a U.S. community-based survey.

OBJECTIVES: To assess, by means of a survey, the impact of the symptoms of overactive bladder (urinary frequency, urgency, and urge incontinence) on the quality of life in a community-based sample of the U.S. population. METHODS: A telephone survey was conducted in the United States among an age and sex-stratified sample of 4896 noninstitutionalized adults 18 years of age and older. From the responses to the telephone survey, a total of 483 individuals with symptoms of overactive bladder and 191 controls completed a mailed follow-up questionnaire to assess their quality of life using the Medical Outcomes Study Short-Form 20. RESULTS: After adjustment for age, sex, and the use of medical care, the greatest differences in the quality-of-life scores between the patients with incontinent overactive bladders and the controls were in the health perception (17.6 points; P <0.001) and role functioning (13.0 points; P <0.001) scales. Those with an overactive bladder with the symptoms of frequency or urgency, or both, but without incontinence, also had significantly lower scores than did the controls in mental health (P = 0.026), health perception (P = 0.01), and bodily pain (P = 0.016). CONCLUSIONS: These data indicate that individuals with an overactive bladder experience decrements in their quality of life relative to community controls. An important new finding from this study is that individuals with an overactive bladder, even without demonstrable urine loss, also have a poorer quality of life than that of controls.

Adult↗

Prevention of intimal hyperplasia with recombinant soluble P-selectin glycoprotein ligand-immunoglobulin in the porcine coronary artery balloon injury model.

OBJECTIVES: The role of P-selectin in the process of restenosis was evaluated using a recombinant immunoglobulin (Ig) chimera form of its ligand, soluble P-selectin glycoprotein ligand-Ig (rPSGL-Ig), as a competitive inhibitor for the natural ligand on leukocytes. BACKGROUND: Inflammation and coagulation activation after vascular injury may be an important factor in the development of restenosis. P-selectin has been shown to mediate leukocyte-endothelium and leukocyte-platelet interaction. These interactions are mediated through binding of P-selectin to P-selectin glycoprotein ligand-1 (PSGL-1) located on the surface of leukocytes. METHODS: Balloon injury was induced in the left anterior descending and right coronary arteries of 16 pigs at a balloon/artery diameter ratio of 1.5:1. Either rPSGL-Ig (1 mg/kg) or saline was randomly administered 15 min before balloon injury as an intravenous bolus. Four weeks after injury, morphometric analysis, immunohistochemistry and histological evaluation were performed on injured arterial segments. RESULTS: Increased luminal area was found in the rPSGL-Ig group compared with the placebo group (1.63 +/- 0.57 mm2 vs. 1.26 +/- 0.32 mm2, p = 0.044) owing to significantly reduced neointimal hyperplasia (cross-sectional area, 0.46 +/- 0.45 mm2 vs. 0.13 +/- 0.11 mm2, p = 0.013). Immunohistochemistry and histological evaluation showed a significant decrease in the presence of tumor necrosis factor-alpha, interleukin-1 beta, and infiltration of macrophages in the injured vessel segments in the rPSGL-Ig group. CONCLUSIONS: P-selectin antagonism using rPSGL-Ig decreases neointimal hyperplasia following balloon injury, by inhibiting the inflammatory and thrombotic responses at the site of balloon injury, which appears to play a pivotal role in the pathogenesis of restenosis.

Angioplasty, Balloon↗

Cloning and characterization of a human lysyl oxidase-like 3 gene (hLOXL3).

Using the PCR primers generated from human expressed sequence tag (EST), the cDNA of lysyl oxidase-like gene 3 (LOXL3), a new member of human lysyl oxidases gene family, was cloned from the human fetal brain mRNA. The predicted amino acid sequence of the hLOXL3 gene was highly homologous to mLOR2. Bioinformatics analysis shows that hLOXL3 protein is also a member of the scavenger receptor cysteine-rich family, which contains a 25 amino acids signal peptide. The hLOXL3 gene was mapped to human 2p13 locus by BLAST search and at least 14 exons were found. Expression of the hLOXL3 gene was detected in several human tissues and especially high in spleen and testis.

Amino Acid Oxidoreductases↗

Variation in lipid composition of Chinese mitten-handed crab, Eriocheir sinensis during ovarian maturation.

This experiment was conducted to investigate the variation in lipid composition during the ovarian maturation of the crab Eriocheir sinensis. The Chinese mitten-handed crab broodstock was divided into six different maturation periods according to the size and color of ovary. Ovary, hepatopancreas, muscle, and hemolymph of broodstock in different maturation periods were analyzed for total lipid and fatty acids using gas chromatography, and lipid classes by thin-layer chromatography. The ovarian lipid concentration (expressed as percent wet ovarian weight) increased steadily from stage II (5.4%) to stage IV (19.1%), and decreased to the lowest levels after spawning (stage V, 6.6%). The hepatopancreatic lipid concentration (expressed as percent wet hepatopancreatic weight) increased with maturity of the ovaries, reached a maximum at stage III(2) (29.9%), and decreased during the subsequent period to spawning (16.7%). The muscular and hemolymph lipid concentration did not change markedly during the ovarian development. These results suggest the possible movement of hepatopancreatic lipids to the ovaries during the ovarian maturation. Both triacylglycerol and phosphatidylcholine were responsible for the increase in ovarian lipid concentration during sexual maturation. The fatty acids of total lipid, triacylglycerol, and phosphatidylcholine of the ovaries did not vary systematically during the ovarian maturation, but the ratio between n-3PUFA (polyunsaturated fatty acid) and n-6PUFA did change regularly with the ovarian lipid. These suggest that enough PUFA, especially n-3PUFA, should be supplied to the crab during ovarian maturation.

Animals↗

PDZ-binding kinase participates in spermatogenesis.

A cDNA clone denoted SPK (spermatogenesis-related protein kinase) was isolated from human fetal brain cDNA library. The deduced protein was 99% identical to human PDZ-binding kinase (PBK), which is a mitotic kinase. Its isoform, which is about 300 bp longer at 3' end, was also isolated in this study. SPK gene was assigned to human chromosome 8p21.2 by radiation hybrid. Northern blot analysis indicated that SPK mRNA was predominantly expressed in testis. SPK mRNA was localized to the outer cell layer of seminiferous tubules by in situ hybridization, suggesting involvement of it in the process of spermatogenesis.

Amino Acid Sequence↗

Cloning and characterization of a novel human TEKTIN1 gene.

Tektins comprise a family of filament-forming proteins that are known to be coassembled with tubulins to form ciliary and flagellar microtubules. A new member of the tektin gene family was cloned from the human fetal brain cDNA library. We hence named it the human TEKTIN1 gene. TEKTIN1 cDNA consists of 1375 bp and has a putative open reading frame encoding 418 amino acids. The predicted protein is 48.3 kDa in size, and its amino acid sequence is 82% identical to that of the mouse, rat, and dog. One conserved peptide RPNVELCRD was observed at position number 323-331 of the amino acid sequence, which is a prominent feature of tektins and is likely to represent a functionally important protein domain. TEKTIN1 gene was mapped to the human chromosome 17 by BLAST search, and at least eight exons were found. Northern blot analysis indicated that TEKTIN1 was predominantly expressed in testis. By in-situ hybridization analysis, TEKTIN1 mRNA was localized to spermatocytes and round spermatids in the seminiferous tubules of the mouse testis, indicating that it may play a role in spermatogenesis.

Amino Acid Sequence↗

Vibrational spectra study of the isomerizational reaction of nitryl hydride.

The vibrational spectral study of the isomerization reaction of nitryl hydride is presented in this paper. The isomerizational reaction includes old bond rupture, new bond formation and electronic transfer in the intramolecule. For the isomerizational reaction, the vibrational modes, the vibrational frequencies and the force constants of the reactant, the transition states and product are analyzed. The relationship and the change among them can confirm the rupture of bond, the formation of bond and the process of electron transfer.

Isomerism↗

The C. elegans PH domain protein CED-12 regulates cytoskeletal reorganization via a Rho/Rac GTPase signaling pathway.

The C. elegans gene ced-12 functions in the engulfment of apoptotic cells and in cell migration, acting in a signaling pathway with ced-2 Crkll, ced-5 DOCK180, and ced-10 Rac GTPase and acting upstream of ced-10 Rac. ced-12 encodes a protein with a pleckstrin homology (PH) domain and an SH3 binding motif, both of which are important for ced-12 function. CED-12 acts in engulfing cells for cell corpse engulfment and interacts physically with CED-5, which contains an SH3 domain. CED-12 has Drosophila and human counterparts. Expression of CED-12 and its counterparts in murine Swiss 3T3 fibroblasts induced Rho GTPase-dependent formation of actin filament bundles. We propose that through interactions with membranes and with a CED-2/CED-5 protein complex, CED-12 regulates Rho/Rac GTPase signaling and leads to cytoskeletal reorganization by an evolutionarily conserved mechanism.

3T3 Cells↗

Cloning and characterization of KLHL5, a novel human gene encoding a kelch-related protein with a BTB domain.

Most kelch family proteins contain two conserved domains, the BTB domain and the kelch repeat domain. Here we describe the cloning and characterization of a novel human KLHL5 gene. The 3488 bp cDNA encodes a kelch family protein homologous to the Drosophila kelch protein. It also contains the two conserved domains. Northern blot analysis reveals a single transcript. It is abundantly expressed in ovary, adrenal gland, and thyroid and less abundantly expressed in trachea, prostate, testis, lymph node, and spinal cord. KLHL5 was mapped to 4p13-4p15.1.

Amino Acid Sequence↗

Identification of a human LNX protein containing multiple PDZ domains.

Recently PDZ domains have been recognized as crucial organizers of protein complexes at the plasma membrane. Here we report the cloning of a novel 3.7-kb cDNA LNX from a human fetal brain cDNA library. The deduced amino acid sequence shares about 88% identity with the p70 form of Lnx, which is the mouse ligand of Numb protein X. Motif analysis reveals five protein-interaction modules conservative to those in the Lnx protein, including four PDZ domains and a NPXY motif for binding of the Numb PTB domain. Northern blot analysis shows that the length of the transcript in brain is distinct from those in other tissues. By radiation hybrid mapping, we localize the LNX gene to human chromosome 4q12 between marker D4S1577 and marker D4S1594. We predict that LNX may be important for the organization of signaling complexes in Numb-involved pathways or pathways regulated by other PTB-containing proteins.

Amino Acid Motifs↗

MRF4 protein expression in regenerating rat muscle.

The myogenic transcription factors of the MyoD family are not expressed in normal adult skeletal muscle. They are upregulated at the transcript and protein levels in a precisely coordinated manner during regeneration. While the cellular distribution of MyoD, myf-5, and myogenin expression in regenerating muscle is well documented, little is known about the exact localization of MRF4. It was the aim of this study to monitor the cellular distribution of MRF4 protein during regeneration. The soleus muscle of 6-week-old male Wistar rats was devascularized and allowed to regenerate for 2, 5, 10 or 14 days. Immunostaining revealed the presence of MRF4 throughout the time periods studied. Expression was detected in the nuclei of myofibers which had survived the devascularization procedure 2 days after necrosis was induced. In nuclei of newly formed myotubes and young myofibers, MRF4 was co-expressed with MyoD and myogenin. MRF4 protein was absent from satellite cells (SC), with anti-M-cadherin being used as a SC marker. Taken together, our results demonstrate that MRF4 protein expression in regenerated fibers is restricted to the time around and after fusion. The absence of MRF4 protein in SC suggests that the role of MRF4 during regeneration is distinct from myf-5, MyoD, and myogenin.

Animals↗

Molecular cloning and characterization of a novel Dehydrogenase/reductase (SDR family) member 1 genea from human fetal brain.

Short-chain dehydrogenases/reductases (SDR) constitute a large protein family of NAD(P)(H)-dependent oxidoreductase. They are defined by distinct, common sequence motifs and show a wide range of substrate specialisms. By large-scale sequencing analysis of a human fetal brain cDNA library, we isolated a novel human SDR-type dehydrogenase/reductase gene named Dehydrogenase/reductase (SDR family) member 1 (DHRS1). The DHRS1 cDNA is 1411 base pair in length, encoding a 314-amino-acid polypeptide which has a SDR motif. Northern blot reveals two bands, of about 0.9 and 1.4 kb in size. These two forms are expressed in many tissues. The DHRS1 gene is localized on chromosome 14q21.3. It has 9 exons and spans 9.2 kb of the genomic DNA.

Amino Acid Sequence↗