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Biomedical subjects

Wei Xie

Publications and source records attributed to Wei Xie.

At least 19 recordsLinked to original sources

The subcortical maternal complex safeguards mouse oocyte-to-embryo transition by preventing nuclear entry of SPIN1.

How cytoplasmic regulators control nuclear events in mammalian oocytes and early embryos remains largely enigmatic. We previously identified a subcortical maternal complex (SCMC) that specifically resides in the cytoplasm of mammalian oocytes and early embryos but is also involved in nuclear events. Nevertheless, how the cytoplasmic SCMC exerts its role in nuclear processes remains unknown. In this study, we unveil SPIN1, a histone methylation reader, as a novel member of the SCMC. The SCMC component FILIA tightly regulates the expression and cytoplasmic localization of SPIN1 through direct interaction. When the expression of FILIA is decreased because of genetic mutations of SCMC genes, SPIN1 expression is dramatically reduced but the residual SPIN1 translocates into the nucleus. The abnormal nuclear presence of SPIN1 impairs H3K4me3 reprogramming, zygotic genome activation and physiological embryonic development. Inhibiting the interaction between SPIN1 and H3K4me3 partially rescues the abnormal phenotype in FILIA-null embryos. Mechanistically, SPIN1 partially perturbs the demethylation process by competing with KDM5B for binding to H3K4me3. Collectively, our work highlights the complexity of the mammalian SCMC and oocyte-to-embryo transition, revealing an intricate regulatory mechanism that facilitates the smooth progression of this process.

Animals↗

Kick-starting the zygotic genome: licensors, specifiers, and beyond.

Zygotic genome activation (ZGA), the first transcription event following fertilization, kickstarts the embryonic program that takes over the control of early development from the maternal products. How ZGA occurs, especially in mammals, is poorly understood due to the limited amount of research materials. With the rapid development of single-cell and low-input technologies, remarkable progress made in the past decade has unveiled dramatic transitions of the epigenomes, transcriptomes, proteomes, and metabolomes associated with ZGA. Moreover, functional investigations are yielding insights into the key regulators of ZGA, among which two major classes of players are emerging: licensors and specifiers. Licensors would control the permission of transcription and its timing during ZGA. Accumulating evidence suggests that such licensors of ZGA include regulators of the transcription apparatus and nuclear gatekeepers. Specifiers would instruct the activation of specific genes during ZGA. These specifiers include key transcription factors present at this stage, often facilitated by epigenetic regulators. Based on data primarily from mammals but also results from other species, we discuss in this review how recent research sheds light on the molecular regulation of ZGA and its executors, including the licensors and specifiers.

Animals↗

Crystallization and preliminary X-ray analysis of a native human tRNA synthetase whose allelic variants are associated with Charcot-Marie-Tooth disease.

Glycyl-tRNA synthetase (GlyRS) is one of a group of enzymes that catalyze the synthesis of aminoacyl-tRNAs for translation. Mutations of human and mouse GlyRSs are causally associated with Charcot-Marie-Tooth disease, the most common genetic disorder of the peripheral nervous system. As the first step towards a structure-function analysis of this disease, native human GlyRS was expressed, purified and crystallized. The crystal belonged to space group P4(3)2(1)2 or its enantiomorphic space group P4(1)2(1)2, with unit-cell parameters a = b = 91.74, c = 247.18 A, and diffracted X-rays to 3.0 A resolution. The asymmetric unit contained one GlyRS molecule and had a solvent content of 69%.

Alleles↗

Indicators of maximal hiking performance in Laser sailors.

Laser class sailors have to hike out, i.e. hook their feet under the toe straps near the centreline of the boat and hold their upper bodies over the edge of the boat, to counteract the heeling forces generated by the sails. To identify the parameters that are associated with maximal hiking performance, this cross-sectional observational study measures various knee extensor and hip flexor muscle performance characteristics in 55 Laser sailors and correlates each with the area-under-the-curve hiking moment over 3 min of hiking on a hiking dynamometer (HM180). Our results showed that higher body mass and HM180 were significantly associated with better race scores (Spearman's rho = - 0.69 and - 0.62, respectively, both P < 0.01) in male sailors who participated in the National Inter-School Laser competition. Body mass (Pearson's correlation coefficient, r > or = 0.95, P < 0.01 in both males and females), maximum voluntary isometric strength of the quadriceps (r > or = 0.80, P < 0.01 in both males and females), and 3-RM knee extension strength (r > or = 0.80, P < 0.01 in both males and females) were associated with a higher HM180. The correlations between height, abdominal muscle endurance (crunches), explosive lower body strength (vertical jumps), cycling time-to-exhaustion, quadriceps strength endurance, or isometric quadriceps endurance with incremental loads (bucket test), and HM180 were weaker (r < 0.60). HM180 may be a useful performance indicator for Laser racing. Since strength measures correlated well with HM180, greater emphasis should be placed on developing maximum strength in the quadriceps to improve maximal hiking performance.

Adolescent↗

Drosophila Ecp is a novel ribosome associated protein interacting with dRPL5.

Drosophila Ecp is a phylogenetically conserved protein with homologs in most eukaryotes. Studies on Ecp homologs in rat and human suggest those proteins might be involved in cell cycle control, cell proliferation, and learning and memory. However, the molecular function of Ecp itself remains unclear. We show that both the mRNA and protein of ecp are ubiquitously expressed during the entire fly embryogenesis and life cycle. Results of co-immunoprecipitation show that Ecp forms a stable complex with many ribosomal proteins, including dRPL5. The binding of Ecp to dRPL5 was confirmed by GST pulldown. Furthermore, Ecp was found to cosediment with ribosome subunits in a sucrose gradient. These results indicate that Ecp might be a novel ribosome associated protein interacting with dRPL5.

Animals↗

Interaction of Skp1 with CENP-E at the midbody is essential for cytokinesis.

Centromere-associated protein E (CENP-E) is a kinesin-related microtubule motor protein that is essential for chromosome congression during mitosis. Our previous studies show that microtubule motor CENP-E represents a link between attachment of spindle microtubules and the mitotic checkpoint signaling cascade. However, the molecular function of CENP-E at the midbody had remained elusive. Here we show that CENP-E interacts with Skp1 at the midbody and participates in cytokinesis. CENP-E interacts with Skp1 in vitro and in vivo via its coiled-coil domain. Our yeast two-hybrid assays mapped the binding interfaces to the central stalk region of CENP-E (955-1571 aa) and the C-terminal 33 amino acids of Skp1, respectively. Our immunocytochemical studies revealed that CENP-E targets to the midbody prior to Skp1 and the midbody localization of CENP-E becomes diminished as Skp1 arrives at the midbody. Suppression of Skp1 in mitotic HeLa cells by siRNA resulted in accumulation of telophase cells with elongated inter-cell bridges and with midbodies stretched 2-3 times longer than that of normal cells. These Skp1-eliminated or -suppressed cells accumulate higher level of CENP-E, suggesting that spatiotemporal regulation of CENP-E degradation at the midbody is essential for cytokinesis. Over-expression of Skp1 lacking the CENP-E-binding domain confirmed that Skp1-CENP-E interaction is essential for faithful cytokinesis. We hypothesize that CENP-E degradation is essential for faithful mitotic exit and the proteolysis of CENP-E is mediated by SCF via a direct Skp1 link.

Cell Cycle Proteins↗

Novel link between E2F1 and Smac/DIABLO: proapoptotic Smac/DIABLO is transcriptionally upregulated by E2F1.

Deregulated expression of E2F1 not only promotes S-phase entry but also induces apoptosis. Although it has been well documented that E2F1 is able to induce p53-dependent apoptosis via raising ARF activity, the mechanism by which E2F induces p53-independent apoptosis remains unclear. Here we report that E2F1 can directly bind to and activate the promoter of Smac/DIABLO, a mitochondrial proapoptotic gene, through the E2F1-binding sites BS2 (-542 approximately -535 bp) and BS3 (-200 approximately -193 bp). BS2 and BS3 appear to be utilized in combination rather than singly by E2F1 in activation of Smac/DIABLO. Activation of BS2 and BS3 are E2F1-specific, since neither E2F2 nor E2F3 is able to activate BS2 or BS3. Using the H1299 ER-E2F1 cell line where E2F1 activity can be conditionally induced, E2F1 has been shown to upregulate the Smac/DIABLO expression at both mRNA and protein levels upon 4-hydroxytamoxifen treatment, resulting in an enhanced mitochondria-mediated apoptosis. Reversely, reducing the Smac/DIABLO expression by RNA interference significantly diminishes apoptosis induced by E2F1. These results may suggest a novel mechanism by which E2F1 promotes p53-independent apoptosis through directly regulating its downstream mitochondrial apoptosis-inducing factors, such as Smac/DIABLO.

Apoptosis↗

Structural and functional characterization of peptide-beta2m fused HLA-A2/MART1(27-35) complexes.

The uses of soluble HLA class I/peptide complexes to monitor antigen reactive T cells are often hampered by their low-yield and high-cost production. As an alternative strategy, the peptide-beta(2)m fused, 2-component (2C) HLA class I/peptide complex has been developed, but its application is limited due to the lack of the comparison of its structural and functional characteristics with those of its conventional 3-component (3C) counterpart. In this study, we have demonstrated that the 2C and 3C HLA-A2/MART1(27-35) complexes have a similar chromatographical profile and comparable stability, but the former has 2.5 times higher yield and significantly higher binding ability with HLA-A2/MART1(27-35) complex-specific receptors than the latter. Furthermore, the 2C complex has a comparable ability to stimulate specific CTL proliferation, but appears to be more effective in eliciting the cytotoxicity of antigen-specific CTL, as compared to its 3C counterpart.

Antigens, Neoplasm↗

TNF receptor-associated factor-1 (TRAF1) negatively regulates Toll/IL-1 receptor domain-containing adaptor inducing IFN-beta (TRIF)-mediated signaling.

Toll-like receptor 3 (TLR3) plays an important role in antiviral responses through recognizing viral double-stranded RNA produced during viral infection and mediating induction of type I IFN. TRIF is a Toll/IL-1 receptor (TIR) domain-containing adaptor protein that is associated with TLR3 and critically involved in TLR3-mediated signaling. In yeast two-hybrid screens, we identified TNF receptor-associated factor (TRAF)1 as a TRIF-interacting protein. The TRAF-C domain of TRAF1 and the TIR domain of TRIF were responsible for their interaction. Overexpression of TRAF1 inhibited TRIF- and TLR3-mediated activation of NF-kappaB, IFN-stimulated response element and the IFN-beta promoter. Overexpression of TRIF caused caspase-dependent cleavage of TRAF1. The cleaved N-terminal but not C-terminal fragment of TRAF1 was responsible for inhibiting TRIF signaling. Mutation of the caspase cleavage site of TRAF1 or addition of the caspase inhibitor crmA inhibited TRAF1 cleavage and abolished the ability of TRAF1 to inhibit TRIF signaling, suggesting that TRIF-induced cleavage of TRAF1 is required for its inhibition of TRIF signaling. Our findings provide a novel mechanism for negative regulation of TRIF-mediated signaling.

Adaptor Proteins, Vesicular Transport↗

Screening of anti-endotoxin components from Radix isatidis.

To find a component with the strongest anti-endotoxin effect from the four components (F021, F022, F023, and F024) of chloroform extract (F02) of Radix Isatidis, the protective effects of the five components on endotoxin-challenged mice and their effects on the production of TNFalpha and IL-6 by macrophages from the endotoxin-challenged mice were compared. It was found that the five components all had protective effects on endotoxin-challenged mice in terms of mortality. The mortalities of the mice challenged by 2.42 mg/kg endotoxin were 30 %, 50 %, 20 %, 50 % and 60 % after treatment with F02, F021, F022, F023, and F024. The 5 components all had inhibitory effects on the production of TNFalpha and IL-6 by macrophages from the mice. At a concentration of LPS of 50 ng/mL, the inhibitory rates of F02 , F021 1, F022, F023, and F024 for the production of TNFalpha and IL-6 were 76.54 %, 30.86 %, 78.60 %, 36.63 %, 2.06 % and 75.85 %, 18.45 %, 77.68 %, 24.41 %, 3.64% and at the dose of 100 ng/mL, the inhibitory rates were 49.65 Y, 16.86 %, 66.97 %, 13.39 %, 7.16 % and 59.78 %, 1.28 %, 61.86 %, 2.08 %, 1.44 %, respectively. It is concluded that the component F022 of Radix Isatidis has the strongest anti-endotoxin effect.

Animals↗

An improved recombineering approach by adding RecA to lambda Red recombination.

Recombineering is the use of homologous recombination in Escherichia coli for DNA engineering. Of several approaches, use of the lambda phage Red operon is emerging as the most reliable and flexible. The Red operon includes three components: Redalpha, a 5' to 3' exonuclease, Redbeta, an annealing protein, and Redgamma, an inhibitor of the major E. coli exonuclease and recombination complex, RecBCD. Most E. coli cloning hosts are recA deficient to eliminate recombination and therefore enhance the stability of cloned DNAs. However, loss of RecA also impairs general cellular integrity. Here we report that transient RecA co-expression enhances the total number of successful recombinations in bacterial artificial chromosomes (BACs), mostly because the E. coli host is more able to survive the stresses of DNA transformation procedures. We combined this practical improvement with the advantages of a temperature-sensitive version of the low copy pSC101 plasmid to develop a protocol that is convenient and more efficient than any recombineering procedure, for use of either double- or single-stranded DNA, published to date.

Animals↗

[Effect of saikosaponins on epileptic seizure and EEG in pentetrazole-induced chronic kindling rats].

OBJECTIVE: To study the effect of saikosaponins, the active ingredients of Bupleurum chinense DC, on epileptic seizure and EEG of pentetrazole (PTZ)-induced chronic kindling rats. METHODS: Forty-eight healthy Sprague-Dawley rats were randomly divided into 6 equal groups, namely the blank control group, normal saline (NS) group, sodium valproate (VPA) group, and 3 saikosaponins groups of high, medium and small doses. Except those in the blank control group, the rats in the other groups were all given different treatments as specified prior to intraperitoneal PTZ injection to induce kindling on a daily basis for 4 consecutive weeks. Epileptic seizures of the rats were recorded during the treatment and EEG recorded at the end of the treatments. RESULTS: Seizure frequency in the 3 saikosaponins groups decreased 2 weeks later, which was especially obvious in the high-dose group (P<0.05). The kindling rate was significantly lower in high-dose saikosaponins group than in the other treatment groups after 4 weeks of the treatment (P<0.05), with also less intense seizure onset (P<0.01) and differences in the wave form of EEG. CONCLUSION: Saikosaponins can inhibit PTZ-induced epileptic seizure in kindling rats and antagonize the kindling effect of PTZ.

Animals↗

[Evaluation of cerebral vasospasm resulting from subarachnoid hemorrhage with 1H-magnetic resonance spectroscopy].

OBJECTIVE: To assess the value of (1)H-magnetic resonance spectroscopy ((1)H-MRS) in evaluating cerebral vasospasm resulting from subarachnoid hemorrhage (SAH). METHODS: Six dogs were subjected to autologous non-heparinized blood injection via cisternal puncture twice at one-day interval to establish models of SAH, and another 6 received injections with normal saline in an identical manner. (1)H-MRS scan was performed on the 3rd, 7th and 14th days after the injections to measure the changes of N-acetylaspartate (NAA), creatine (Cr) and choline (Cho). After the (1)H-MRS scan, all the dogs underwent brain digital subtraction angiography (DSA) for determining the basilar artery diameter. RESULTS: DSA results on day 3 presented development of obvious vasospasm of the basilar artery, which was most evident on day 7 and recovered obviously on day 14. (1)H-MRS results demonstrated obvious changes of NAA, Cho and Cr on days 3 and 7 in SAH model group, and NAA declined to the lowest level on day 3 followed by gradual ascending till reaching the normal level on day 14. Cho decreased slightly on day 3, then increased and reached the peak level on day 7 and then decreased. Cr rose steadily from day 3 to 14, but since day 7, the rise slowed down obviously and Cr maintain a level not significantly different from that on day 14 (P>0.05). The functional results of (1)H-MRS were consistent with the DSA results. CONCLUSION: (1)H-MRS can be used to monitor the development of cerebral vasospasm resulting from SAH as a good evaluation method for functional imaging.

Animals↗

[Effect of saikosaponins on glial fibrillary acidic protein expression in hippocampal astrocytes of pentetrazole-induced chronic kindling rats].

OBJECTIVE: To study the effect of saikosaponins, the active ingredients of Bupleurum chinense DC, on glial fibrillary acidic protein (GFAP) expression in hippocampal astrocytes of chronic kindling rats induced by pentetrazole (PTZ). METHODS: Forty-eight healthy Sprague-Dawley rats were randomized into 6 equal groups, namely the blank control group (Group A), normal saline group (Group B), sodium valproate group (Group C), and 3 saikosaponins groups of high, medium and small doses (Groups D, E, and F, respectively). The rats (except those in Group A) received intraperitoneal injection of PTZ to induce chronic kindling 1 h after the respective agents as indicated were administered intragastrically on a daily basis for 4 consecutive weeks. Upon completion of the treatment course, the rats were sacrificed and the brain tissues were sampled, sliced and stained for immunohistochemical examination. The results were analyzed to calculate the positive cell count, cross-sectional area of the cells and the gray scale. RESULTS: In group B, the positive cell population and cross-sectional area of the positive cells were the greatest among the groups (P<0.01), but the positive cell gray scale of the CA1 and CA2 regions and the dentate gyrus (DG) of the hippocampus was the lowest. The CA1 region of Group B was significantly different from that of groups A, C and D (P<0.01), and the CA2 region different from groups A, C, D and E (P<0.05), while the DG different from group F (P<0.05) and groups A, C, D and E (P<0.01). CONCLUSION: In chronic kindling rats induced by PTZ, GFAP overexpression can be inhibited by saikosaponins, which suppress the abnormal activation of hippocampal astrocyte of the kindling rats.

Animals↗

[Modification of the method for preparing rabbit liver VX2 tumor model and its MRI findings].

OBJECTIVE: To improve the method for preparing rabbit VX2 liver tumor model and observe the magnetic resonance imaging (MRI) features of the implanted tumors. METHODS: Sixteen adult New Zealand white rabbits were assigned randomly into 4 equal groups, and VX2 tumor tissues were implanted into the right and left liver lobes with spiral CT guidance. Plain and contrast-enhanced MR scan and pathological analysis were performed in different stages (14, 18, 22 and 26 days) after tumor implantation. RESULTS: Tumor implantation was successful in all the rabbits, and 18 to 22 days after tumor implantation, the diameters of the tumor ranged from 1 to 2 cm, which allowed observation and study. In plain MR scans, lower or equivalent tumor signal in comparison with hepatic parenchyma was observed, and contrast-enhanced scans produced obvious enhancement of the tumor edges. At 22 days after tumor implantation, obvious necrosis was observed in the center of the tumor. CONCLUSION: This method of preparing rabbit VX2 liver tumor model with spiral CT guidance is simple and convenient, and the tumors can be observed effectively with dynamic plain and contrast-enhanced MR scans.

Animals↗

[Effect of bizhongxiao decoction on the expression of 2-dimensional polyacrylamide gel electrophoresis protein in the synovial tissue with collagen-induced arthritis in rats].

OBJECTIVE: To explore the effect of bizhongxiao decoction (BZXD) on the protein maps of BZXD-treated synovitis of collagen-induced arthritis (CIA) in rats in 2-dimensional gel electrophoresis (2-DE), and to provide new clues for illuminating the active mechanism of BZXD in treating the rheumatoid arthritis (RA). METHODS: Seventy SD rats were randomly divided into nor- mal group, model group and BZXD group. The experimental arthritis rat model was established by subcutaneouly injecting Type II collagen and complete Freunds adjuvant. The total proteins of synovial tissue of rat joints in the normal group, model group and BZXD group were seperated by 2-DE respectively. The gels of the 3 groups were stained by Coomassie brilliant blue. Electron pictures were obtained by scanning the gels, and then the differential proteins among the normal group, model group and BZXD group were examined by comparing the spots density volume in the gels. The electrophoregrams of the gels were analyzed in Pdquest software. RESULTS: The incidence of arthritis in the rats was approximately 88%. The 2-DE maps of rat synovial tissue in the normal group, model group and BZXD group were well duplicated. The average protein spots in the normal group, model group and BZXD group were 947 +/- 39, 994 +/- 41, and 1031 +/- 52, and the match rates were 92%, 91%, and 94.2% respectively. The average deviations of spot position were (0.896 +/- 0.217) mm in isoelectric focusing (IEF) and (1.102 +/- 0.104) mm in sodiumdo-decylsufate-polyacrylamide gel electrophoresis (SDS-PAGE), respectively. Three hundred twenty-eight differential proteins were observed between the model group and BZXD group, of which 174 were up-regulated, 147 were down-regulated in the BZXD group, and 7 proteins were expressed only in the model group. One hundred ninty-three differential proteins were displayed between the model group and the normal group, of which 123 proteins were up-regulated and 70 were down-regulated in the model group. CONCLUSION: 2-DE protein expression profiles of synovial tissue in CIA rats are established, and many differential proteins are discovered. Further analysis on the differential proteins may serve as a new method to study the moleculer mechanism of BZXD in treating the rheumatoid arthritis.

Animals↗

[Study on the relationship between polymorphisms of genes (CYP17, CYP19 and SULT1A1) and susceptibility to breast cancer in Chinese women].

OBJECTIVE: To investigate the relationship between polymorphisms of genes (CYP17, CYP19 and SULT1A1) involved in estrogen metabolism and susceptibility to breast cancer in Chinese women. METHODS: A case-control study was performed. PCR-base restriction fragment length polymorphism (PCR-RFLP) and short tandem repeat polymorphism (STRP) assays were used to detect the polymorphism distribution of CYP17, CYP19 and SULT1A1 in 213 breast cancer cases and 430 matched controls. Logistic regression analyses were used to determine the OR, multivariate adjusted OR and 95% CI of each and all three genes and estrogen exposure factors on the risk of breast cancer. Relationship between polymorphisms and clinic-pathological features was also assessed. RESULTS: The frequency of A2 allele of CYP17 was 49.8% in cases and 49.1% in controls (P > 0.05). The frequency His allele of SULT1A1 in cases (13.6%) was significant higher than that of controls (9.5%) (P = 0.03). There was also significant difference in the frequencies of (TTTA)10 allele CYP19 which was 12.4% in cases and 8.2% in controls (P = 0.02). Multigenic model indicated that there was an increased risk of breast cancer with more numbers of high-risk genotypes in a dose-response effect (trend P = 0.05). Data from multivariate analysis showed that the allele of SULT1A1 His and CYP19 (TTTA)10 was positively associated with the risk of breast cancer. Other well-established risk factors as higher estrogen exposure including total years of menstrual, early menarche etc, and women with a higher BMI and WHR were all served as independent risks. CONCLUSION: This study indicated that the polymorphisms of estrogen-metabolizing genes were related to breast cancer.

Aromatase↗

[Saikosaponins inhibit increased glutamate and GABA expressions in the hippocampus of pentetrazole-induced slow kindling rats].

OBJECTIVE: To study the effect of saikosaponins, the active ingredients of Bupleurum chinense DC. on glutamate and GABA expressions in the hippocampus of slow kindling rats induced by pentetrazole. METHODS: Forty-eight healthy Sprague-Dawley rats were randomly divided into 6 equal groups, namely the blank control group (group A), normal saline (NS) group (group B), sodium valproate group (group C), and 3 saikosaponins groups of high, medium and small doses (groups D, E, and F, respectively). The rats in each group other than group A were given corresponding treatments after slow kindling by pentetrazole. After 4 weeks of treatment, the rats were sacrifices and the brain tissues were sampled, sliced and stained by immunohistochemically, and the results were analyzed according to the positive cell number and gray scale. RESULTS: In CA1 region, the glutamate-positive cell number and gray scale of group B was significantly different from the other groups (P<0.05), but such difference was not observed in the CA2 and DG (P>0.05); In CA1, CA2 and DG of the hippocampus, the GABA-positive cell number of group B was significantly greater but the gray scale lower than those of the other groups (P<0.05). In CA1 and CA2 regions of the hippocampus, the glutamate- and GABA-positive cell ratio of group B was significantly lower than that of the other groups (P<0.05), but in CA1, CA2, and DG region of the hippocampus, the ratio of gray scale between glutamate- and GABA-positive cells was comparable between the groups (P>0.05). CONCLUSION: The expression of glutamate and GABA, especially the latter, increased in chronic kindling rat hippocampus. Saikosaponins intervene in such changes of glutamate and GABA to contain their expressions within normal range, which may be one of the mechanisms of saikosaponins to inhibit slow kindling induced by pentetrazole.

Animals↗