Search PubMed⌕ Search

Biomedical subjects

Z Sun

Publications and source records attributed to Z Sun.

At least 91 records · Page 5Linked to original sources

Catalytic and fibrinolytic properties of recombinant urokinase plasminogen activator from E. coli, mammalian, and yeast cells.

The enzymatic and fibrinolytic properties of glycosylated and nonglycosylated recombinant human pro-urokinase (pro-UK) produced in yeast Pichia pastoris were characterized and compared with those of Escherichia coli and mammalian cell-derived pro-UK. Among the five different forms of pro-UK, the yeast glycosylated pro-UK was activated by plasmin with the lowest catalytic efficiency (kcat/Km). The yeast glycosylated urokinase (UK) also had the highest Km in its activation of Glu-plasminogen, and had a substantially lower fibrinolytic activity than the other four forms. These findings suggest that the poly-mannose on Asn-302 of yeast glycosylated pro-UK interfered with its activation by plasmin and its binding interaction with plasminogen. By contrast to plasminogen, the activation of the small synthetic substrate, S2444, was comparable for all five forms of recombinant UK. It is concluded that the glycosyl residue on pro-UK/UK is functionally important and modulates its activatability and its catalytic efficiency against its natural substrate. Therefore, pro-UK from different expression systems cannot be assumed to have comparable fibrinolytic activities.

Animals↗

Androgen receptor interacts with a novel MYST protein, HBO1.

The androgen receptor (AR), a member of the nuclear receptor superfamily, plays a central role in male sexual differentiation and prostate cell proliferation. Results of treating prostate cancer by androgen ablation indicate that signals mediated through AR are critical for the growth of these tumors. Like other nuclear receptors, AR exerts its transcriptional function by binding to cis-elements upstream of promoters and interacting with other transcriptional factors (e.g. activators, repressors and modulators). To determine the mechanism of AR-regulated transcription, we used the yeast two-hybrid system to identify AR-associated proteins. One of the proteins we identified is identical to the human origin recognition complex-interacting protein termed HBO1. A ligand-enhanced interaction between AR and HBO1 was further confirmed in vivo and in vitro. Immunofluorescence experiments showed that HBO1 is a nuclear protein, and Northern blot analysis revealed that it is ubiquitously expressed, with the highest levels present in human testis. HBO1 belongs to the MYST family, which is characterized by a highly conserved C2HC zinc finger and a putative histone acetyltransferase domain. Surprisingly, two yeast members of the MYST family, SAS2 and SAS3, have been shown to function as transcription silencers, despite the presence of the histone acetyltransferase domain. Using a GAL4 DNA-binding domain assay, we mapped a transcriptional repression domain within the N-terminal region of HBO1. Transient transfection experiments revealed that HBO1 specifically repressed AR-mediated transcription in both CV-1 and PC-3 cells. These results indicate that HBO1 is a new AR-interacting protein capable of modulating AR activity. It could play a significant role in regulating AR-dependent genes in normal and prostate cancer cells.

Acetyltransferases↗

Requirement for RORgamma in thymocyte survival and lymphoid organ development.

Most developing thymocytes undergo apoptosis because they cannot interact productively with molecules encoded by the major histocompatibility complex. Here, we show that mice lacking the orphan nuclear hormone receptor RORgamma lose thymic expression of the anti-apoptotic factor Bcl-xL. RORgamma thus regulates the survival of CD4+8+ thymocytes and may control the temporal window during which thymocytes can undergo positive selection. RORgamma was also required for development of lymph nodes and Peyer's patches, but not splenic follicles. In its absence, there was loss of a population of CD3-CD4+CD45+ cells that normally express RORgamma and that are likely early progenitors of lymphoid organs. Hence, RORgamma has critical functions in T cell repertoire selection and lymphoid organogenesis.

Animals↗

N-3-substituted imidazoquinazolinones: potent and selective PDE5 inhibitors as potential agents for treatment of erectile dysfunction.

Phosphodiesterase type 5 (PDE5) inhibitors with improved PDE isozyme selectivity relative to sildenafil may result in agents for the treatment of male erectile dysfunction (MED) with a lower incidence of PDE-associated adverse effects. This paper describes the discovery of 14, a PDE5 inhibitor with improved potency and selectivity in vitro compared to sildenafil. This compound shows activity in a functional assay of erectile function comparable to that of sildenafil.

3',5'-Cyclic-GMP Phosphodiesterases↗

PKC-theta is required for TCR-induced NF-kappaB activation in mature but not immature T lymphocytes.

Productive interaction of a T lymphocyte with an antigen-presenting cell results in the clustering of the T-cell antigen receptor (TCR) and the recruitment of a large signalling complex to the site of cell-cell contact. Subsequent signal transduction resulting in cytokine gene expression requires the activation of one or more of the multiple isoenzymes of serine/threonine-specific protein kinase C (PKC). Among the several PKC isoenzymes expressed in T cells, PKC-theta is unique in being rapidly recruited to the site of TCR clustering. Here we show that PKC-theta is essential for TCR-mediated T-cell activation, but is dispensable during TCR-dependent thymocyte development. TCR-initiated NF-kappaB activation was absent from PKC-theta(-/-) mature T lymphocytes, but was intact in thymocytes. Activation of NF-kappaB by tumour-necrosis factor alpha and interleukin-1 was unaffected in the mutant mice. Although studies in T-cell lines had suggested that PKC-theta regulates activation of the JNK signalling pathway, induction of JNK was normal in T cells from mutant mice. These results indicate that PKC-theta functions in a unique pathway that links the TCR signalling complex to the activation of NF-kappaB in mature T lymphocytes.

Animals↗

PDEF, a novel prostate epithelium-specific ets transcription factor, interacts with the androgen receptor and activates prostate-specific antigen gene expression.

Prostate cancer, the most frequent solid cancer in older men, is a leading cause of cancer deaths. Although proliferation and differentiation of normal prostate epithelia and the initial growth of prostate cancer cells are androgen-dependent, prostate cancers ultimately become androgen-independent and refractory to hormone therapy. The prostate-specific antigen (PSA) gene has been widely used as a diagnostic indicator for androgen-dependent and -independent prostate cancer. Androgen-induced and prostate epithelium-specific PSA expression is regulated by a proximal promoter and an upstream enhancer via several androgen receptor binding sites. However, little progress has been made in identifying androgen-independent regulatory elements involved in PSA gene regulation. We report the isolation of a novel, prostate epithelium-specific Ets transcription factor, PDEF (prostate-derived Ets factor), that among the Ets family uniquely prefers binding to a GGAT rather than a GGAA core. PDEF acts as an androgen-independent transcriptional activator of the PSA promoter. PDEF also directly interacts with the DNA binding domain of androgen receptor and enhances androgen-mediated activation of the PSA promoter. Our results, as well as the critical roles of other Ets factors in cellular differentiation and tumorigenesis, strongly suggest that PDEF is an important regulator of prostate gland and/or prostate cancer development.

Amino Acid Sequence↗

Glycosylation of prourokinase produced by Pichia pastoris impairs enzymatic activity but not secretion.

Both glycosylated and nonglycosylated forms of recombinant human prourokinase were produced to the level of 20 mg/L by yeast Pichia pastoris in BMMY medium after 2 days of culture. The expressed pro-UK was 98% secreted into the culture medium and easily purified by carboxymethyl cellulose chromatography. More than 99% of pro-UK in the culture medium was found in single-chain form. This was contradictory to a previous finding which found that glycosylation of pro-UK by yeast inhibited its secretion. The absence of glycosylation at Asn302 of pro-UK has no measurable effect on its secretion from the yeast cells. However, the nonglycosylated pro-UK was much less stable in the culture medium, probably due to proteolysis. Nonglycosylated pro-UK from yeast had a clot lysing activity comparable to that of Escherichia coli-derived or mammalian cell-derived recombinant pro-UK. By contrast, the glycosylated yeast pro-UK was less activatable by plasmin and had a lower enzymatic activity against plasminogen and a lower clot lysing activity than nonglycosylated pro-UK from yeast, while their amidolytic activity against S2444 was equivalent. It was concluded that glycosylation of pro-UK by yeast P. pastoris interferes with the catalytic site but not secretion of this protein.

Binding Sites↗

Effects of aprotinin on serum interleukin-2 and soluble interleukin-2 receptor during cardiopulmonary bypass.

Interleukin-2 and its receptor are of importance in regulating immunity responses. The changes of interleukin-2 (IL-2) and soluble interleukin-2 receptor (IL-2R) during heart valve (s) replacement operation and effects of aprotinin on them were observed. Twenty patients undergoing heart valve(s) replacement were randomly divided into two groups: control group (n = 10) and aprotinin group (n = 10). In aprotinin group, 1,000,000 KIU aprotinin was given by vein injection and then 2,000,000 KIU was given as a bolus in prime. Blood samples were collected before CPB, right after CPB and on the 1st, 3rd and 7th postoperative day (POD) for serum IL-2 and sIL-2R determination. Results showed that after CPB, IL-2 was reduced and sIL-2R increased. Meanwhile, serum IL-2R was lower in aprotinin group than that of control. It is concluded that the immunity depression after CPB is associated with low level of IL-2 and high level of sIL-2R and aprotinin can ameliorate the situation.

Aprotinin↗

Pseudorabies virus induces apoptosis in tissue culture cells.

The process of cell death as a result of exposure to pseudorabies virus (PRV) in cultured cells was examined and specific features characteristic of apoptosis were observed. At early times of infection, externalization of membrane phospholipid phophatidylserine was detected by flow cytometry analysis. During the infection process, caspase 3-like protease activity was induced and the activity increased in a time dependent manner. Cellular DNA degradation was demonstrated by agarose gel electrophoresis. Morphologic changes of the nucleus that included chromatin condensation and margination to the periphery of the nucleus were evident in electron microscopy analysis. These biochemical and morphologic changes demonstrated that, during PRV replication, the host cell was induced to undergo apoptosis.

Animals↗

Effects of age, gender, and lifestyle factors on plasma apolipoprotein A-IV concentrations.

Apolipoprotein (apo) A-IV is a protein component of triglyceride (TG)-rich lipoproteins and high density lipoproteins (HDL). Plasma apo A-IV levels were measured by immunoelectrophoresis and these values were related to other biological variables in 723 middle aged and elderly men and women (more than 90% of them were Caucasian) prior to participation in a lifestyle modification program. Apo A-IV may play an important function in regulating lipid absorption, reverse cholesterol transport, and food intake. The data are consistent with the following concepts: (1) apo A-IV levels are significantly and positively correlated with age (r = 0.159, P < 0.05) in all subjects, with plasma apo A-I levels in both men (r = 0.194, P < 0.001) and women (r = 0.213, P < 0.001), and with apo E (r=0.111, P<0.05) and TG levels (r =0.120, P <0.05) in men; (2) apo A-IV levels are inversely correlated with body mass index (r = 0.170, P <0.05) in women; (3) female subjects on hormone replacement therapy have significantly lower plasma apo A-IV levels (by 4.1%, P < 0.05) than normal controls; (4) diabetic subjects have significantly higher apo A-IV levels (by 21%, P < 0.01) than normal subjects; (5) there is no significant effect of smoking, alcohol intake, and apo A-IV-1/2 genotype on apo A-IV levels. The data indicate that plasma apo A-IV levels are significantly affected by age, diabetes, and hormone replacement therapy.

Adult↗

Localization of dopamine D1A and D1B receptor mRNAs in the forebrain and midbrain of the domestic chick.

The distribution and cellular localization of dopamine D1A and D1B receptor mRNAs in the forebrain and midbrain of the domestic chick were examined using in situ hybridization histochemistry with 35[S]-dATP labeled oligonucleotide probes, visualized with film and emulsion autoradiography. Labeling for D1A receptor mRNA was intense in the medial and lateral striatum, and moderately abundant in the pallial regions termed the archistriatum and the neostriatum, in the hypothalamic paraventricular nucleus region, and in the superficial gray layer of optic tectum of the midbrain. D1B receptor mRNA was abundant in the medial and lateral striatum, and in the pallial region termed the hyperstriatum ventrale, and moderately abundant in the intralaminar dorsal and posterior thalamus and in the superficial gray of the optic tectum. At the cellular level, about 75% of neurons in the medial striatum and 59% of neurons in the lateral striatum were labeled for D1A receptor mRNA, whereas about 39% of the neurons in the medial striatum and 21% in the lateral striatum were labeled for D1B receptor mRNA. Large striatal neurons were not labeled for D1A or D1B receptor mRNA. The data suggest that while both D1A and D1B receptors mediate dopaminergic responses in many neurons of the avian striatum, primarily D1A receptors mediate dopaminergic responses in the archistriatum and the neostriatum, while primarily D1B receptors mediate dopaminergic responses in the hyperstriatum ventrale and the thalamus.

Animals↗

Cleavage of ATM during radiation-induced apoptosis: caspase-3-like apoptotic protease as a candidate.

PURPOSE: To study the relationship of ionizing radiation-induced apoptosis with the integrity of ATM (mutated in ataxia telangiectasia) that has a critical role in DNA damage sensing and repair, cell-cycle checkpoint controls and maintenance of genomic stability. MATERIALS AND METHODS: U937 cells were treated with gamma-radiation. Sub-G1 DNA content, DNA fragmentation, cleavage of PARP, active caspase-3, cleavage of ATM in vivo and in vitro were measured by flow cytometry, agarose gel electrophoresis, cleaving of colorimetric caspase-3 substrate and Western blotting. RESULTS: ATM is specifically cleaved in cells during the induction of apoptosis by ionizing radiation exposure. The time-course of cleavage coincided with the appearance of cells with a sub-G1 DNA content and activation of caspase-3. ATM was cleaved with similar kinetics as PARP and DEVD-FMK could abolish the cleavage. In vitro studies showed that ATM was cleaved by caspase-3 or related subfamily members at a DIVD/G site. CONCLUSION: ATM belongs to a group of repair proteins, including PARP, DNA-PK and HsRad51, which are specifically cleaved during apoptosis. These findings support the idea that repair mechanisms need to be inactivated for apoptosis to proceed efficiently.

Apoptosis↗

Attaining nocturnal urinary control, nocturnal enuresis, and behavioral problems in Chinese children aged 6 through 16 years.

OBJECTIVE: To estimate the prevalence of nocturnal enuresis and to examine associations between nocturnal urinary control or enuresis and behavioral problems in Chinese children. METHOD: A community sample of 3,600 children aged 6 through 16 years was drawn from Shandong Province of China in 1997; 3,344 (93%) returned completed questionnaires. The Child Behavior Checklist and Teacher's Report Form were used to measure children's behavioral problems. RESULTS: The proportion of children attaining nocturnal urinary control before age 2 was 7.7%; by age 3, this had increased to 53.1%, and by age 5 to 93%. The overall prevalence of nocturnal enuresis was 4.3%, with a significantly higher prevalence in boys than girls. There was no significant decrease in the prevalence of enuresis between 6 and 16 years of age. Multiple logistic regression analyses showed that attaining nocturnal urinary control after age 4 and current enuresis were significantly associated with an increased risk of behavioral, emotional, and academic problems. CONCLUSIONS: Chinese children attain nocturnal urinary control earlier than Western children. The prevalence of nocturnal enuresis is low but fairly stable in children between 6 and 16 years. The findings support the link between nocturnal enuresis and psychopathology in children and adolescents.

Adolescent↗

Phagocytic and intestinal endothelial and epithelial barrier function during the early stage of small intestinal ischemia and reperfusion injury.

The effects of intestinal ischemia and reperfusion (I/R) on small intestinal mucosal endothelial and epithelial barrier integrity and phagocytic function were assessed in rats subjected to 20- or 40-min mesenteric ischemia and a 3-h reperfusion. The results showed that human serum albumin (125I-HSA) flux through the endothelial layer to the interstitial space increased as did 125I-HSA clearance from blood to the gut lumen and 131I-HSA flux from the gut lumen to the interstitial space in rats with I/R. E. coli adhering to microvilli, invading and passing into the microvessels, were noted on the small intestinal mucosa in animals subjected to 40-min ischemia and a 3-h reperfusion. Phagocytic function increased, especially in the small intestinal wall, lungs, liver, and spleen in the groups with I/R, correlating with the length of ischemia. The results imply that both endothelial and epithelial barrier integrity is impaired in the early phase after I/R and that the epithelial barrier more effectively restricts macromolecular leakage compared with the endothelial barrier. I/R impairs the intestinal barrier not only by causing tissue hypoxia but also by activating the phagocytic system and aggravating barrier damage, which finally may result in bacterial translocation and remote organ dysfunction.

Animals↗

Identification of the SAAT gene involved in strawberry flavor biogenesis by use of DNA microarrays.

Fruit flavor is a result of a complex mixture of numerous compounds. The formation of these compounds is closely correlated with the metabolic changes occurring during fruit maturation. Here, we describe the use of DNA microarrays and appropriate statistical analyses to dissect a complex developmental process. In doing so, we have identified a novel strawberry alcohol acyltransferase (SAAT) gene that plays a crucial role in flavor biogenesis in ripening fruit. Volatile esters are quantitatively and qualitatively the most important compounds providing fruity odors. Biochemical evidence for involvement of the SAAT gene in formation of fruity esters is provided by characterizing the recombinant protein expressed in Escherichia coli. The SAAT enzyme showed maximum activity with aliphatic medium-chain alcohols, whose corresponding esters are major components of strawberry volatiles. The enzyme was capable of utilizing short- and medium-chain, branched, and aromatic acyl-CoA molecules as cosubstrates. The results suggest that the formation of volatile esters in fruit is subject to the availability of acyl-CoA molecules and alcohol substrates and is dictated by the temporal expression pattern of the SAAT gene(s) and substrate specificity of the SAAT enzyme(s).

Acyltransferases↗

Mycobacterium smegmatis has two pyrazinamidase enzymes, PncA and pzaA.

The Mycobacterium smegmatis pncA gene, encoding nicotinamidase/pyrazinamidase, was identified. While it was similar to counterparts from other mycobacteria, the M. smegmatis PncA had little homology to the other M. smegmatis pyrazinamidase/nicotinamidase, encoded by the pzaA gene. Transformation of Mycobacterium bovis strain BCG with M. smegmatis pncA or pzaA conferred susceptibility to pyrazinamide.

Amidohydrolases↗

Beneficial effects of lexipafant, a PAF antagonist on gut barrier dysfunction caused by intestinal ischemia and reperfusion in rats.

BACKGROUND: Platelet-activating factor (PAF) may play a pivotal role in the pathogenesis of intestinal ischemic injury. METHODS: The potential role of PAF in intestinal ischemia and reperfusion (I/R) and the development of gut endothelial and epithelial barrier dysfunction and distant organ injury were investigated by pretreatment with a PAF antagonist, lexipafant. Bidirectional permeability of the intestinal barrier, enteric bacterial translocation, protease-antiprotease balance and mucosal histology, and also changes in pulmonary and liver endothelial barrier permeability were measured following intestinal ischemia for 40 min with 6 h of reperfusion in rats. RESULTS: Intestinal mucosal endothelial and epithelial permeabilities significantly increased in animals with I/R. Lexipafant prevented the increase in albumin leakage from blood to the mucosal interstitium and the intestinal lumen during reperfusion, and the mucosal albumin leakage from the gut lumen to blood during I/R. Bacterial translocation was frequently noted in animals with I/R, while only a few positive cultures were obtained in animals with I/R administered lexipafant. Less leakage of fluorescein isothiocyanate dextran 70,000 into the interstitial space and gut lumen in I/R animals with lexipafant pretreatment was found under fluorescein microscopy. Lexipafant also partly prevented C1 inhibitor, prekallikrein, and factor X consumption in I/R animals and partly prevented changes in pulmonary and liver albumin leakage. CONCLUSIONS: PAF seems to play an important role in I/R-associated intestinal dysfunction and the development of distant organ dysfunction, probably by triggering endothelial and epithelial barrier dysfunction. Furthermore, PAF seems to be partly involved in activation of the protease-antiprotease system. The use of PAF antagonists may provide a mode of treatment against I/R-associated organ dysfunction.

Animals↗