PubMed Health⌕ Search

Biomedical subjects

Zhi Zhang

Publications and source records attributed to Zhi Zhang.

At least 19 recordsLinked to original sources

tBid elicits a conformational alteration in membrane-bound Bcl-2 such that it inhibits Bax pore formation.

During initiation of apoptosis, Bcl-2 family proteins regulate the permeability of mitochondrial outer membrane. BH3-only protein, tBid, activates pro-apoptotic Bax to release cytochrome c from mitochondria. tBid also activates anti-apoptotic Bcl-2 in the mitochondrial outer membrane, changing it from a single-spanning to a multispanning conformation that binds the active Bax and inhibits cytochrome c release. However, it is not known whether other mitochondrial proteins are required to elicit the tBid-induced Bcl-2 conformational alteration. To define the minimal components that are required for the functionally important Bcl-2 conformational alteration, we reconstituted the reaction using purified proteins and liposomes. We found that purified tBid was sufficient to induce a conformational alteration in the liposome-tethered, but not cytosolic Bcl-2, resulting in a multispanning form that is similar to the one found in the mitochondrial outer membrane of drug-treated cells. Mutations that abolished tBid/Bcl-2 interaction also abolished the conformational alteration, demonstrating that a direct tBid/Bcl-2 interaction at the membrane is both required and sufficient to elicit the conformational alteration. Furthermore, active Bax also elicited the Bcl-2 conformational alteration. Bcl-2 mutants that displayed increased or decreased activity in the conformational alteration assay showed corresponding activities in inhibiting pore formation by Bax in vitro and in preventing apoptosis in vivo. Thus, there is a strong correlation between the direct interaction of membrane-bound Bcl-2 and tBid with activation of Bcl-2 in vitro and in vivo.

Animals↗

Widespread adaptive evolution of Drosophila genes with sex-biased expression.

Many genes in higher eukaryotes show sexually dimorphic expression, and these genes tend to be among the most divergent between species. In most cases, however, it is not known whether this rapid divergence is caused by positive selection or if it is due to a relaxation of selective constraint. To distinguish between these two possibilities, we surveyed DNA sequence polymorphism in 91 Drosophila melanogaster genes with male-, female-, or nonsex-biased expression and determined their divergence from the sister species D. simulans. Using several single- and multilocus statistical tests, we estimated the type and strength of selection influencing the evolution of the proteins encoded by genes of each expression class. Adaptive evolution, as indicated by a relative excess of nonsynonymous divergence between species, was common among the sex-biased genes (both male and female). Male-biased genes, in particular, showed a strong and consistent signal of positive selection, while female-biased genes showed more variation in the type of selection they experience. Genes expressed equally in the two sexes, in contrast, showed no evidence for adaptive evolution between D. melanogaster and D. simulans. This suggests that sexual selection and intersexual coevolution are the major forces driving genetic differentiation between species.

Adaptation, Biological↗

Inhibitory effect of statins on renal epithelial-to-mesenchymal transition.

BACKGROUND/AIM: Recent studies have suggested that statins may play a role in the protection against renal failure which is independent of cholesterol reduction. Activation of RhoGTPases is a key step in renal tubular cells' epithelial-to-mesenchymal transition (EMT) which contributes to renal interstitial fibrosis. We hypothesized that statins could act by inhibiting the synthesis of the isoprenoids, such as geranylgeranyl pyrophosphate, which is essential for membrane attachment and biological activity of RhoGTPases, RhoA and Rac1. METHODS: Human proximal tubular epithelial cells (HK2) were used to examine the inhibitory effect of statins on EMT induced with medium conditioned by activated peripheral blood mononuclear cells. RESULTS: Our study demonstrates that the statins lovastatin, simvastatin, and pravastatin inhibit HK2 cells to undergo EMT. Inhibition of EMT in HK2 cells with these statins resulted in a reduction of RhoA and Rac1 activation in both the cytoplasmic and membrane-bound forms, in preservation of the expression of the epithelial cell markers E-cadherin and cytokeratin-19, and in a decrease in Fn-EDA expression, a marker for the myofibroblast phenotype. The decreased levels of activated RhoA and Rac1 in both the cytoplasmic and membrane fractions of the cells were reversed by geranylgeranyl pyrophosphate and mevalonate, and thus attributable to the inhibition of isoprenylation of RhoGTPases by statins. CONCLUSION: This phenomenon could explain the beneficial effect of statins on EMT and on renal fibrosis prevention.

Cell Differentiation↗

[Comparison percutaneous cervical disc nucleoplasty and cervical discectomy for the treatment of cervical disc herniation].

OBJECTIVE: To compare the therapeutic effect of percutaneous cervical disc nucleoplasty (PCN group) and percutaneous cervical discectomy (PCD group) for the treatment of cervical disc herniation. METHODS: A retrospective study was carried out from July of 2002 to December of 2004, and there were 80 cervical disc herniation cases who were operated by PCN (42 cases) or PCD (38 cases). The time of operation, clinical result and the stability of cervical spine after operation were evaluated and compared between 2 groups. RESULTS: All cases had been followed up from 6 months to 26 months, average (12 +/- 5) months on the PCN group and (12 +/- 4) months on the PCD group, and there was no significant difference on 2 groups (t = -0.06, P = 0.953). All cases had been successfully operated. There was significant difference in the operation time between 2 groups (t = -21.70, P = 0.000). There was significant difference in the pre- and post-operation scores of each group (PCN group: t = 14.05, P = 0.000; PCD group: t = -14.79, P = 0.000). There was no significant difference in 2 groups of the clinical outcomes (z = -0.377, P = 0.706, > 0.05). There was no instability of cervical spine cases in 2 groups after operation (P > 0.05), and the cervical spine stability was no significant difference in pre- and-operation in each group. CONCLUSIONS: PCN and PCD for the treatment of cervical disc herniation achieves good outcomes and no difference on the stability of cervical spine. PCN and PCD is a safe, minimally invasive, short time of operation, less traumatic operation and excellent clinical outcome.

Adult↗

Bcl-2 changes conformation to inhibit Bax oligomerization.

Bcl-2 inhibits apoptosis by regulating the release of cytochrome c and other proteins from mitochondria. Oligomerization of Bax promotes cell death by permeabilizing the outer mitochondrial membrane. In transfected cells and isolated mitochondria, Bcl-2, but not the inactive point mutants Bcl-2-G145A and Bcl-2-V159D, undergoes a conformation change in the mitochondrial membrane in response to apoptotic agonists such as tBid and Bax. A mutant Bcl-2 with two cysteines introduced at positions predicted to result in a disulfide bond that would inhibit the mobility of alpha5-alpha6 helices (Bcl-2-S105C/E152C) was only active in a reducing environment. Thus, Bcl-2 must change the conformation to inhibit tBid-induced oligomerization of integral membrane Bax monomers and small oligomers. The conformationally changed Bcl-2 sequesters the integral membrane form of Bax. If Bax is in excess, apoptosis resumes as Bcl-2 is consumed by the conformational change and in complexes with Bax. Thus, Bcl-2 functions as an inhibitor of mitochondrial permeabilization by changing conformation in the mitochondrial membrane to bind membrane-inserted Bax monomers and prevent productive oligomerization of Bax.

Animals↗

Auto-activation of the apoptosis protein Bax increases mitochondrial membrane permeability and is inhibited by Bcl-2.

Interactions among Bcl-2 family proteins mediated by Bcl-2 homology (BH) regions transform apoptosis signals into actions. The interactions between BH3 region-only proteins and multi-BH region proteins such as Bax and Bcl-2 have been proposed to be the dominant interactions required for initiating apoptosis. Experimental evidence also suggests that both homo- and hetero-interactions are mediated primarily by the BH3 regions in all Bcl-2 family proteins and contribute to commitment to or inhibition of apoptosis. We found that a peptide containing the BH3 helix of Bax was not sufficient to activate recombinant Bax to permeabilize mitochondria. However, an extended peptide containing the BH3 helix and additional downstream sequences activated Bax to permeabilize mitochondria and liposomes. Bcl-2 inhibited the membrane-permeabilizing activity of peptide-activated Bax. This activity of Bcl-2 was inhibited by the extended but not the BH3-only peptide despite both peptides binding to Bcl-2 with similar affinity. Further, membrane-bound Bax activation intermediates directly activated soluble Bax further permeabilizing the membrane. Bcl-2 inhibited Bax auto-activation. We therefore propose that Bax auto-activation amplifies the initial death signal produced by BH3-only proteins and that Bcl-2 functions as an inhibitor of Bax auto-activation.

Animals↗

Magnetization influence on the performance of ferrosoferric oxide: polyacrylonitrile membranes in ultrafiltration of pig blood solution.

Three kinds of membranes were prepared from suspensions containing polyacrylonitrile, dimethyl sulfoxide, polyethylene glycol and different amount of Fe3O4 by the phase inversion process. The rejection rate and the flux of membrane were investigated in the filtration of pig blood solution. SEM also studied the morphologies of fouled membranes. The permeate flux and the rejection rate decline fast in the initial several minutes and then change slowly. The magnetized membrane has a higher flux and a relative flux than the corresponding non-magnetized membrane. And the magnetized membrane containing about 3 wt% Fe3O4 has a prominent anti-fouling performance with above 52% relative flux. The results indicate that the magnetized ferrosoferric oxide-polyacrylonitrile membranes are promising in the recovery of blood proteins in the slaughterhouse effluents. In addition, the hydraulic resistance model explained results and the fouling mechanism was also given.

Acrylic Resins↗

Co-ordinate but disproportionate activation of apoptotic, regenerative and inflammatory pathways characterizes the liver response to acute amebic infection.

The liver has the remarkable ability to respond to injury with repair and regeneration. The protozoan parasite Entamoeba histolytica is the major cause of liver abscess worldwide. We report a transcriptional analysis of the response of mouse liver to E. histolytica infection, the first study looking at acute liver infection by a non-viral pathogen. Focusing on early time points, we identified 764 genes with altered transcriptional levels in amebic liver abscess. The response to infection is rapid and complex, with concurrent increased expression of genes linked to host defence through IL-1, TLR2, or interferon-induced pathways, liver regeneration via activation of IL-6 pathways, and genes associated with programmed cell death possibly through TNFalpha or Fas pathways. A comparison of amebic liver infection with the liver response to partial hepatectomy or toxins reveals striking similarities between amebic liver abscess and non-infectious injury in key components of the liver regeneration pathways. However, the response in amebic liver abscess is biased towards apoptosis when compared with acute liver injury from hepatectomy, toxins, or other forms of liver infection. E. histolytica infection of the liver simultaneously activates inflammatory, regenerative and apoptotic pathways, but the sum of these early responses is biased towards programmed cell death.

Animals↗

Rethinking culture and self-construal: China as a middle land.

Amid criticisms of current paper-and-pencil type questionnaires measuring self-construal across cultural groups, the authors used a graphic representation scale to examine whether Anglo Canadians (N = 220) were more independent than Mainland Chinese (N = 196) and Indians (N = 212) in construing their relationships with closest family member, family members, closest friend, friends, (other) relatives, colleagues, and neighbors. Data generated 5 intriguing findings: (a) Chinese were more interdependent than Canadians but less so than Indians, indicating that Chinese culture has become more individualistic. (b) Canadians were more independent than Chinese in 6 relationship dimensions but were as interdependent as Chinese in self-closest-friend connectedness, somewhat contradicting 1 assumption of theories of independent-interdependent self-construal and individualism-collectivism (I-C). (c) Canadians were more independent than Indians in all relationship dimensions, supporting theories of independent-interdependent self-construal and I-C. (d) Chinese were as interdependent as Indians in self-closest-family-member, self-close-family-members, and self-relatives connectedness but more independent than Indians in the other categories of self-other relationships. (e) Participants' age did not have strong correlations with variables measuring self-construal in any sample, indicating that a person's attachment style may not change greatly over a lifespan. The authors discussed theoretical and methodological implications.

Adult↗

[Correlation of genetic polymorphisms in DNA repair genes ADPRT and XRCC1 to risk of gastric cancer].

BACKGROUND & OBJECTIVE: Adenosine diphosphate ribosyl transferase (ADPRT) and X-ray repair cross-complementing 1 (XRCC1) are 2 major DNA base excision repair (BER) proteins and act interactively in stimulating and executing BER processes. Polymorphisms of ADPRT 762Val-->Ala and XRCC1 399Arg-->Gln have been verified to associate with altered protein function and BER activity. This study was to examine the contribution of these 2 polymorphisms, alone or in combination, to the risk of developing gastric cancer. METHODS: A total of 236 patients with gastric cancer and 708 cancer-free controls were genotyped for the 2 polymorphisms by polymerase chain reaction-restrictive fragment length polymorphism (PCR-RFLP) method. Odds ratio (OR) and 95% confidence interval (CI) were calculated using unconditional logistic regression model to evaluate the impact of these 2 polymorphisms on the risk of developing gastric cancer. RESULTS: The subjects having the ADPRT Ala/Ala genotype had an OR of 2.07 (95% CI=1.33-3.21; P=0.001) compared with those having the Val/Val genotype. Gene-gene interaction of ADPRT and XRCC1 polymorphisms increased the risk of gastric cancer in a super-multiplicative manner, with an OR of 5.32 (95% CI=1.12-28.57) for the presence of both ADPRT 762Ala/Ala and XRCC1 399Gln/Gln genotypes, although the XRCC1 polymorphism itself was not associated with the risk of gastric cancer. CONCLUSION: The ADPRT 762Val-->Ala polymorphism plays an important role in the development of gastric cancer, and the XRCC1 399Arg-->Gln polymorphism may serve as a risk modifier.

ADP Ribose Transferases↗

[The antagonistic effect of recombinant human decorin on TGF-beta1 stimulation of fibroblasts in collagen lattices].

OBJECTIVE: To mimic contact pattern between decorin and TGF-beta1, in vivo, and investigate the antagonistic effect of recombinant human decorin on TGF-beta1 stimulation of hypertrophic scar fibroblasts in collagen lattices. METHODS: Fibroblasts populated collagen lattices (FPCL) model was adopted in the study, and they were divided into control group, decorin group [2mg/L recombinant human decorin (rh-decorin) was administered to FPCL], TGF-beta1 group (5 microg/LTGF-beta1 was administered to the culture medium), and TGF-beta1 + decorin group (2mg/L rh-decorin was administered to FPCL, then culture medium containing 5 microg/L TGF-beta1 was added into FPCL). Changes in PAI-1 and alpha-SMA protein expression in scar fibroblasts in collagen lattices were detected with Western blotting at 12 post-administration hour (PAH), 24 PAH, 48 PAH, and 72 PAH, and expressions of PAI-1 and alpha-SMA mRNA were concomitantly examined by RT-PCR. RESULTS: The contraction of FPCL at each time-point in control group was obviously attenuated compared with that in decorin group, but it was significantly intensified compared with that in TGF-beta1 group. The expression of PAI-1 and alpha-SMA mRNA and protein in TGF-beta1 group (3482 +/- 211, 4320 +/- 272, 0.89 +/- 0.15, 0.56 +/- 0. 11) were markedly increased than those in control group (1764 +/- 147, 1699 +/- 146, 0.29 +/- 0.06, 0.21 +/- 0.06, P < 0.01), while no obvious difference of them was found between control and other two groups. CONCLUSION: Stimulation of scar fibroblasts by TGF-beta1, can be suppressed when rh-decorin is blended into collagen lattices, indicating that decorin is effective in neutralizing TGF-beta1 in vitro. The pathogenesis of hypertrophic scar might be related to up-regulation of TGF-beta1 with the lack of decorin after cutaneous injury.

Cells, Cultured↗

[Endothelial progenitor cells related gene expression changes before and early after revascularization in patients with acute myocardial infarction].

OBJECTIVE: The purpose of this study was to observe the endothelial progenitor cells (EPCs) related gene expression changes before and early after revascularization in patients with acute myocardial infarction. METHODS: Peripheral blood samples were taken from patients with acute anterior myocardial infarction 6 hours and 7 days after PCI and stenting. Mononuclear cells (MNCs) were isolated by Ficoll-density centrifugation and cultured in M-199 medium. After 14 days culture, attaching cells incorporated DiI-acetylated low-density lipoprotein (EPCs) were collected and RNA was isolated by Trizol for microarray analysis on 24 genes associated with permissibility/vessel tone (angiotensin system: ACE, AGTR-1, AGTR-2; NO system: eNOS; prostacyclin system: COX-2; endothelin system: ET-1, ETA, ETB; superoxide anions system: SOD-1), angiogenesis (adhesion molecule: CDH5; growth factors and receptors: VEGFR1, VEGFR2, VEGF) and endothelial cell activation (adhesion molecules expression: ICAM1, ICAM2, ICAM3, PECAM-1, E-Selectin, L-Selection, VCAM1; change phenotype from antithrombotic to prothrombotic: tPA, uPA, PAI, vWF). VEGFR2, PECAM-1 and VE-cadherin positive cells were identified by flow cytometry. RESULT: Eight gene expressions (AGTR-1, AGTR-2, COX-2, eNOS, ET-1, ETA, VEGF) were significantly downregulated 7 days post PCI compared to pre-PCI (P < 0.05). Flow cytometry results showed that VEGFR2 positive cells were also significantly reduced post PCI than that of before PCI (P < 0.05). CONCLUSION: PCI down-regulated endothelial progenitor cells related gene expressions in patients with acute myocardial infarction.

Aged↗

[The application of laser holograph-speckle interferometry for measuring rotation of abutment teeth].

OBJECTIVE: To explore the rotation of abutment teeth of fixed partial denture in chewing and to analyze the effect of rotation on the stability of abutment teeth. METHODS: Left mandible (without the second premolar and the first molar) was used for specimen. Holograph-speckle interferometry was employed for measuring the rotation angle. RESULTS: The maximal rotation angle was no more than 0.6 degrees and change of the angle was obviously in nonlinearity, when load increased from 9.8 N to 225.4 N. CONCLUSIONS: The laser holograph-speckle interferometry could be used to measure rotation of abutment teeth. The intricate surface contacting was the main reason for rotation and this rotation had no bad effect on abutment teeth of fixed partial denture in daily use.

Adult↗

TGF-beta1 induces human alveolar epithelial to mesenchymal cell transition (EMT).

BACKGROUND: Fibroblastic foci are characteristic features in lung parenchyma of patients with idiopathic pulmonary fibrosis (IPF). They comprise aggregates of mesenchymal cells which underlie sites of unresolved epithelial injury and are associated with progression of fibrosis. However, the cellular origins of these mesenchymal phenotypes remain unclear. We examined whether the potent fibrogenic cytokine TGF-beta1 could induce epithelial mesenchymal transition (EMT) in the human alveolar epithelial cell line, A549, and investigated the signaling pathway of TGF-beta1-mediated EMT. METHODS: A549 cells were examined for evidence of EMT after treatment with TGF-beta1. EMT was assessed by: morphology under phase-contrast microscopy; Western analysis of cell lysates for expression of mesenchymal phenotypic markers including fibronectin EDA (Fn-EDA), and expression of epithelial phenotypic markers including E-cadherin (E-cad). Markers of fibrogenesis, including collagens and connective tissue growth factor (CTGF) were also evaluated by measuring mRNA level using RT-PCR, and protein by immunofluorescence or Western blotting. Signaling pathways for EMT were characterized by Western analysis of cell lysates using monoclonal antibodies to detect phosphorylated Erk1/2 and Smad2 after TGF-beta1 treatment in the presence or absence of MEK inhibitors. The role of Smad2 in TGF-beta1-mediated EMT was investigated using siRNA. RESULTS: The data showed that TGF-beta1, but not TNF-alpha or IL-1beta, induced A549 cells with an alveolar epithelial type II cell phenotype to undergo EMT in a time-and concentration-dependent manner. The process of EMT was accompanied by morphological alteration and expression of the fibroblast phenotypic markers Fn-EDA and vimentin, concomitant with a downregulation of the epithelial phenotype marker E-cad. Furthermore, cells that had undergone EMT showed enhanced expression of markers of fibrogenesis including collagens type I and III and CTGF. MMP-2 expression was also evidenced. TGF-beta1-induced EMT occurred through phosphorylation of Smad2 and was inhibited by Smad2 gene silencing; MEK inhibitors failed to attenuate either EMT-associated Smad2 phosphorylation or the observed phenotypic changes. CONCLUSION: Our study shows that TGF-beta1 induces A549 alveolar epithelial cells to undergo EMT via Smad2 activation. Our data support the concept of EMT in lung epithelial cells, and suggest the need for further studies to investigate the phenomenon.

Cadherins↗

Positive correlation between evolutionary rate and recombination rate in Drosophila genes with male-biased expression.

Previous studies have shown that genes that are expressed predominantly or exclusively in males tend to evolve rapidly in comparison to other genes. In most cases, however, it is unknown whether this rapid evolution is the result of increased positive (or sexual) selection on male-expressed traits or if it is due to a relaxation of selective constraints. To distinguish between these two possibilities, we analyzed the relationship between the nonsynonymous substitution rate (dN) and local recombination rate for 343 Drosophila genes that were classified as male, female, or nonsex biased in their expression. For the male-biased genes, a positive correlation between dN and recombination rate was observed. This can be explained by an increased rate of adaptive evolution in regions of higher recombination due to a reduction of Hill-Robertson interference. In contrast, the correlation between dN and recombination rate was negative for both female- and nonsex-biased genes, suggesting that these genes are primarily subject to purifying selection, which is expected to be less effective in regions of reduced recombination.

Animals↗

Shell and subshell periodic structures of icosahedral nickel nanoclusters.

Using the modified analytic embedded atom method and molecular dynamics, the binding energies and their second order finite differences (stability functions) of icosahedral Ni clusters with shell and subshell periodicity are studied in detail via atomic evolution. The results exhibit shell and subshell structures of the clusters with atoms from 147 to 250,000, and the atomic numbers corresponding to shell or subshell structures are in good agreement with the experimental magic numbers obtained in time-of-flight mass spectra of threshold photoionization, and Martin's theoretical proposition of progressive formation of atomic umbrellas. Clusters with size from 147 to 561 atoms are energetically investigated via one-by-one atomic evolution and their magic numbers are theoretically proved. For medium-size Ni clusters with 561 to 2057 atoms, the prediction of magic numbers with atomic numbers is performed on the basis of umbrella-like subshell growth in near face-edge-vertex order. The similarity of the energy curves makes it possible to extend the prediction to even larger Ni nanoclusters in hierarchical Mackay icosahedral configurations.

Journal Article↗

RhoGTPase activation is a key step in renal epithelial mesenchymal transdifferentiation.

ESRD is characterized by an interstitial infiltrate of inflammatory cells in association with tubular atrophy, epithelial mesenchymal transdifferentiation (EMT), and interstitial fibrosis. Human proximal tubular epithelial cells (HK2 cells) undergo EMT in response to activated PBMC conditioned medium (aPBMC-CM), showing acquisition of a fibroblastoid morphology, increased fibronectin-EDA (EDA) expression, loss of junctional E-cadherin localization, and cytokeratin 19 (K19) expression. The signaling pathway(s) that regulates EMT in response to aPBMC-CM is not well understood. This study shows that aPBMC-CM induces a rapid activation of RhoA, Rac1, and Cdc42 activity in HK2 cells from 15 min to 48 h. Moreover, infection with adenovirus expressing constitutively active RhoA, Rac1, and Cdc42 significantly increased the expression of EDA and downregulated expression of E-cadherin and K19. Dominant negative RhoA expression suppressed aPBMC-CM-induced upregulation of EDA but did not restore the expression of E-cadherin and K19. Constitutively active RhoA activated the Rho kinase and its downstream effectors, whereas constitutively active Rac1 and Cdc42 activated the P21-activated protein kinase in epithelial cells. In further experiments, HK2 cells were treated with toxin B, exoenzyme C3, Y-27632, and HA1077. These strategies, inhibiting the Rho/Rho kinase pathway, as well as the Rac1/Cdc42/P21-activated protein kinase pathway, blocked transdifferentiation of HK2 cells in response to aPBMC-CM. To conclude, these results indicate that aPBMC-CM activates RhoA, Rac1, and Cdc42 and their downstream effectors, leading to HK2 cells undergoing transdifferentiation. Therefore, activation of small RhoGTPases is a key step in the mechanism of EMT and likely to be a contributor to tubulointerstitial fibrosis.

Cell Differentiation↗