The kinetochore is structurally composed offour layers. We know that three microtubule-based motorproteins such as CENP-E, dynein, and MCAK are located at the outmost region of the kinetochore. Experimentation ofthese...The kinetochore is structurally composed offour layers. We know that three microtubule-based motorproteins such as CENP-E, dynein, and MCAK are located at the outmost region of the kinetochore. Experimentation ofthese motor functions betters our understanding of mitotic regulation, and chromosome movements in particular.With real-time studies of chromosome movements in livecells, we hope to illustrate the molecular mechanisms under-lying mitotic regulation.展开更多
TOR(target of rapamycin)是真核细胞中一种高度保守的与磷脂酰肌醇激酶相关的蛋白激酶(PIKK),它是免疫抑制剂/抗癌药物雷帕霉素(rapamycin)的靶物质。TOR是细胞生长的中枢控制因子,外界营养因素通过TOR的作用控制酵母、果蝇和哺乳动物...TOR(target of rapamycin)是真核细胞中一种高度保守的与磷脂酰肌醇激酶相关的蛋白激酶(PIKK),它是免疫抑制剂/抗癌药物雷帕霉素(rapamycin)的靶物质。TOR是细胞生长的中枢控制因子,外界营养因素通过TOR的作用控制酵母、果蝇和哺乳动物细胞的生长。TOR根据细胞环境的营养条件做出相应的应答,参与调控蛋白激酶和蛋白磷酸酯酶的活性,从而控制与蛋白质合成和基因转录相关基因的表达。现对酵母细胞中TOR信号转导途径的研究进行简明的阐述。展开更多
The purpose of this study was to investigate the repair of the osteoarthritis(OA)-induced car- tilage injury by transfecting the new TGF-β3 fusion protein (LAP-MMP-mTGF-β3) with targeted ther- apy function into ...The purpose of this study was to investigate the repair of the osteoarthritis(OA)-induced car- tilage injury by transfecting the new TGF-β3 fusion protein (LAP-MMP-mTGF-β3) with targeted ther- apy function into the bone marrow-derived mesenchymal stem cells (MSCs) in rats. The recombinant of plRES-EGFP-MMP was constructed by combination of DNA encoding MMP enzyme cutting site and eukaryotic expression vector plRES-EGFP. LAP and mTGF-β3 fragments were obtained from rat em- bryos by RT-PCR and inserted into the upstream and downstream of MMP from plRES-EGFP-MMP respectively, so as to construct the recombinant plasmid ofplRES-EGFP-LAP-MMP-mTGF-β3, plRES- EGFP-LAP-MMP-mTGF-β3 was transfected into rat MSCs. The genetically modified MSCs were cul- tured in medium with MMP-1 or not. The transfected MSCs were transplanted in the rat OA models. The OA animal models were surgically induced by anterior cruciate ligament transaction (ACLT). The pathological changes were observed under a microscope by HE staining, Alcian blue, Safranin-fast Gre- en and graded by Mankin's scale, plRES-EGFP-LAP-MMP-mTGF-β3 was successfully constructed by means of enzyme cutting and sequencing, and the mTGF-β3 fusion protein (39 kD) was certified by Western blotting. Those genetically modified MSCs could differentiate into chondrocytes induced by MMP and secrete the relevant-matrix. The transfected MSCs could promote chondrogenesis and matrix production in rat OA models in vivo. It was concluded that a new fusion protein LAP-MMP-mTGF-β3 was constructed successfully by gene engineering, and could be used to repair the OA-induced cartilage injury.展开更多
目的探讨南蛇藤素对高脂饲养载脂蛋白E基因敲除小鼠在动脉粥样硬化病变形成的早期动脉壁内C反应蛋白和组织因子表达的影响。方法8周龄雄性载脂蛋白E基因敲除小鼠12只,随机分为南蛇藤素干预组或二甲基亚砜溶剂对照组,每组各6只。均给予...目的探讨南蛇藤素对高脂饲养载脂蛋白E基因敲除小鼠在动脉粥样硬化病变形成的早期动脉壁内C反应蛋白和组织因子表达的影响。方法8周龄雄性载脂蛋白E基因敲除小鼠12只,随机分为南蛇藤素干预组或二甲基亚砜溶剂对照组,每组各6只。均给予高脂饲养8周,在高脂饲养的后4周,分别给予南蛇藤素2mg/(kg·d)或相当剂量的二甲基亚砜腹腔注射。麻醉处死小鼠后,取小鼠主动脉,以石蜡包埋,行主动脉根部连续切片;以HE染色观察形态学变化,免疫组织化学法检测主动脉壁内C反应蛋白和组织因子的表达水平,以Image Pro Plus6.0软件进行图像分析。结果南蛇藤素干预组主动脉粥样硬化斑块面积明显小于对照组,分别为4947±1277μm2和8403±2535μm2(P<0.05);南蛇藤素组主动脉粥样斑块面积/血管壁面积比值明显小于对照组(P<0.05);南蛇藤素组动脉壁C反应蛋白表达水平较对照组明显减少,平均光密度值分别为0.0152±0.0052与0.0256±0.0026(P<0.05);动脉粥样硬化斑块内组织因子表达水平较对照组明显减少,平均光密度值分别为0.0326±0.0132与0.0763±0.0347(P<0.05)。结论南蛇藤素可能通过抑制载脂蛋白E基因敲除小鼠炎症反应和动脉壁中C反应蛋白的表达而发挥抗动脉粥样的作用;还可能通过减少粥样斑块中组织因子的产生,而进一步起到稳定动脉粥样硬化斑块的作用。展开更多
文摘The kinetochore is structurally composed offour layers. We know that three microtubule-based motorproteins such as CENP-E, dynein, and MCAK are located at the outmost region of the kinetochore. Experimentation ofthese motor functions betters our understanding of mitotic regulation, and chromosome movements in particular.With real-time studies of chromosome movements in livecells, we hope to illustrate the molecular mechanisms under-lying mitotic regulation.
文摘TOR(target of rapamycin)是真核细胞中一种高度保守的与磷脂酰肌醇激酶相关的蛋白激酶(PIKK),它是免疫抑制剂/抗癌药物雷帕霉素(rapamycin)的靶物质。TOR是细胞生长的中枢控制因子,外界营养因素通过TOR的作用控制酵母、果蝇和哺乳动物细胞的生长。TOR根据细胞环境的营养条件做出相应的应答,参与调控蛋白激酶和蛋白磷酸酯酶的活性,从而控制与蛋白质合成和基因转录相关基因的表达。现对酵母细胞中TOR信号转导途径的研究进行简明的阐述。
基金supported by the National Natural Science Foundation of China(No.81101376)
文摘The purpose of this study was to investigate the repair of the osteoarthritis(OA)-induced car- tilage injury by transfecting the new TGF-β3 fusion protein (LAP-MMP-mTGF-β3) with targeted ther- apy function into the bone marrow-derived mesenchymal stem cells (MSCs) in rats. The recombinant of plRES-EGFP-MMP was constructed by combination of DNA encoding MMP enzyme cutting site and eukaryotic expression vector plRES-EGFP. LAP and mTGF-β3 fragments were obtained from rat em- bryos by RT-PCR and inserted into the upstream and downstream of MMP from plRES-EGFP-MMP respectively, so as to construct the recombinant plasmid ofplRES-EGFP-LAP-MMP-mTGF-β3, plRES- EGFP-LAP-MMP-mTGF-β3 was transfected into rat MSCs. The genetically modified MSCs were cul- tured in medium with MMP-1 or not. The transfected MSCs were transplanted in the rat OA models. The OA animal models were surgically induced by anterior cruciate ligament transaction (ACLT). The pathological changes were observed under a microscope by HE staining, Alcian blue, Safranin-fast Gre- en and graded by Mankin's scale, plRES-EGFP-LAP-MMP-mTGF-β3 was successfully constructed by means of enzyme cutting and sequencing, and the mTGF-β3 fusion protein (39 kD) was certified by Western blotting. Those genetically modified MSCs could differentiate into chondrocytes induced by MMP and secrete the relevant-matrix. The transfected MSCs could promote chondrogenesis and matrix production in rat OA models in vivo. It was concluded that a new fusion protein LAP-MMP-mTGF-β3 was constructed successfully by gene engineering, and could be used to repair the OA-induced cartilage injury.
文摘目的探讨南蛇藤素对高脂饲养载脂蛋白E基因敲除小鼠在动脉粥样硬化病变形成的早期动脉壁内C反应蛋白和组织因子表达的影响。方法8周龄雄性载脂蛋白E基因敲除小鼠12只,随机分为南蛇藤素干预组或二甲基亚砜溶剂对照组,每组各6只。均给予高脂饲养8周,在高脂饲养的后4周,分别给予南蛇藤素2mg/(kg·d)或相当剂量的二甲基亚砜腹腔注射。麻醉处死小鼠后,取小鼠主动脉,以石蜡包埋,行主动脉根部连续切片;以HE染色观察形态学变化,免疫组织化学法检测主动脉壁内C反应蛋白和组织因子的表达水平,以Image Pro Plus6.0软件进行图像分析。结果南蛇藤素干预组主动脉粥样硬化斑块面积明显小于对照组,分别为4947±1277μm2和8403±2535μm2(P<0.05);南蛇藤素组主动脉粥样斑块面积/血管壁面积比值明显小于对照组(P<0.05);南蛇藤素组动脉壁C反应蛋白表达水平较对照组明显减少,平均光密度值分别为0.0152±0.0052与0.0256±0.0026(P<0.05);动脉粥样硬化斑块内组织因子表达水平较对照组明显减少,平均光密度值分别为0.0326±0.0132与0.0763±0.0347(P<0.05)。结论南蛇藤素可能通过抑制载脂蛋白E基因敲除小鼠炎症反应和动脉壁中C反应蛋白的表达而发挥抗动脉粥样的作用;还可能通过减少粥样斑块中组织因子的产生,而进一步起到稳定动脉粥样硬化斑块的作用。