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81.
In infection, complement C1q recognizes pathogen-congregated antibodies and elicits complement activation. Among endogenous ligands, C1q binds to DNA and apoptotic cells, but whether C1q binds to nuclear DNA in apoptotic cells remains to be investigated. With UV irradiation-induced apoptosis, C1q initially bound to peripheral cellular regions in early apoptotic cells. By 6 h, binding concentrated in the nuclei to the nucleolus but not the chromatins. When nucleoli were isolated from non-apoptotic cells, C1q also bound to these structures. In vivo, C1q exists as the C1 complex (C1qC1r2C1s2), and C1q binding to ligands activates the C1r/C1s proteases. Incubation of nucleoli with C1 caused degradation of the nucleolar proteins nucleolin and nucleophosmin 1. This was inhibited by the C1 inhibitor. The nucleoli are abundant with autoantigens. C1q binding and C1r/C1s degradation of nucleolar antigens during cell apoptosis potentially reduces autoimmunity. These findings help us to understand why genetic C1q and C1r/C1s deficiencies cause systemic lupus erythematosus.  相似文献   
82.
旨在探讨人参总皂苷对K562细胞STAT5表达的影响.MTT法显示TSPG对K562细胞增殖抑制程度呈剂量与时间依赖性增加,且呈正相关关系.流式细胞术表明TSPG能阻止K562细胞从G0/G1期向S、G2/M期移行.激光共聚焦显微镜观察可见,TSPG 200 mg/L作用K562细胞24 h,胞浆中的STAT5荧光强度增加,而胞核内STAT5荧光强度减弱.Western blotting结果显示,TSPG作用K562细胞6 、24 、48 h,胞核中STAT5表达较对照组减少,TSPG作用72 h胞核蛋白中STAT5表达增加;TSPG作用K562细胞6 、12、24、48、72 h,胞浆内STAT5表达增加.TSPG能减少K562胞核中STAT5的表达,这可能是TSPG抑制K562细胞增殖的作用机制之一.  相似文献   
83.
杨秀芹  刘慧  郭丽娟  关庆芝  许尧  刘娣 《遗传》2008,30(6):741-746
以野猪、民猪和大白猪为研究对象, 根据网上公布的序列设计了7对引物, 采用测序、PCR-SSCP和PCR-RFLP方法对CAPN1基因的部分外显子和3′UTR区进行了单核苷酸多态性检测和基因型分析, 探讨CAPN1基因多态性与瘦肉率和嫩度的关系。研究发现11个SNPs, 其中5个位于外显子, 4个位于内含子, 2个位于3′UTR区, 外显子中的突变有一处是错义突变, 导致了蛋白质多肽链第260位氨基酸发生了M/V的替代。群体遗传学分析表明, 在所检测的各多态位点上, 野猪、民猪、大白猪3个品种间不同基因型的分布都存在着极显著的差异(P<0.01), 而野猪和民猪之间各基因型的分布差异不显著(P>0.05), 民猪和大白猪之间各基因型的分布存在着极显著的差异(P<0.01)。结合品种特性分析表明, P4、P6引物和3′ UTR区HinfⅠ位点所检测的不同基因型和瘦肉率具有一定的相关性。  相似文献   
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In this study, we aimed to study the role of growth factor receptor-bound protein 2 (Grb2) in palmitic acid-induced steatosis and other “fatty liver” symptoms in vitro. HepG2 cells, with or without stably suppressed Grb2 expression, were incubated with palmitic acid for 24 h to induce typical clinical “fatty liver” features, including steatosis, impaired glucose metabolism, oxidative stress, and apoptosis. MTT and Oil Red O assays were applied to test cell viability and fat deposition, respectively. Glucose uptake assay was used to evaluate the glucose utilization of cells. Quantitative polymerase chain reaction and Western blot were used to measure expressional changes of key markers of insulin signaling, lipid/glucose metabolism, oxidative stress, and apoptosis. After 24-h palmitic acid induction, increased fat accumulation, reduced glucose uptake, impaired insulin signaling, enhanced oxidative stress, and increased apoptosis were observed in HepG2 cells. Suppression of Grb2 in HepG2 significantly reduced fat accumulation, improved glucose metabolism, ameliorated oxidative stress, and restored the activity of insulin receptor substrate-1/Akt and MEK/ERK pathways. In addition, Grb2 deficiency attenuated hepatic apoptosis shown by reduced activation of caspase-3 and fluorescent staining. Modulation of Bcl-2 and Bak1 also contributed to reduced apoptosis. In conclusion, suppression of Grb2 expression in HepG2 cells improved hepatic steatosis, glucose metabolism, oxidative stress, and apoptosis induced by palmitic acid incubation partly though modulating the insulin signaling pathway.  相似文献   
87.
Stem cells are critical for normal tissue homeostasis and injury‐induced regeneration, but how wounding affects tissue regeneration at the cellular and molecular levels is not yet fully understood. A new study by Yui et al ( 2018 ) demonstrates that the extracellular matrix (ECM) remodeling modulates intestinal stem cells in tissue repair and regeneration via activation of the Hippo pathway effectors YAP/TAZ.  相似文献   
88.
It is well established that paracrine secretion of anti-viral CCR5 ligands by CD8+ and CD4+ T cells can block the infection of activated CD4+ T cells by R5 and dual-tropic isolates of HIV-1. By contrast, because CD4+ T cells can be infected by HIV-1 and at least some subsets secrete anti-viral CCR5 ligands, it is possible that these ligands protect against HIV-1 via autocrine as well as paracrine pathways. Here we use a model primary CD4+ T cell response in vitro to show that individual CD4+ T cells that secrete anti-viral CCR5 ligands are 'self-protected' against infection with R5 but not X4 strains of HIV-1. This protection is selective for CD4+ T cells that secrete anti-viral CCR5 ligands in that activated CD4+ T cells in the same cultures remain infectable with R5 HIV-1. These data are most consistent with an autocrine pathway of protection in this system and indicate a previously unappreciated selective pressure on the emergence of viral variants and CD4+ T cell phenotypes during HIV-1 infection.  相似文献   
89.
肿瘤干细胞(cancer/tumor stem cell,CSC/TSC)假说认为肿瘤组织中存在极少量的瘤细胞充当着干细胞的角色,它们具有自我更新能力、无限增殖能力,且能驱动肿瘤的形成和生长。近年来,随着在血液肿瘤和实体瘤中相继发现CSC/TSC存在的相关证据,对CSC/TSC的生物学特性的认识不断深入,对肿瘤的复发、转移、耐药性等特点也有了新的观点和研究方向,就近年来该方面的进展作一综述。  相似文献   
90.
Aberrant activation of the Wnt/beta-catenin signaling pathway is associated with numerous human cancers and often correlates with the overexpression or amplification of the c-myc oncogene. Paradoxical to the cellular transformation potential of c-Myc is its ability to also induce apoptosis. Using an inducible c-MycER expression system, we found that Wnt/beta-catenin signaling suppressed apoptosis by inhibiting c-Myc-induced release of cytochrome c and caspase activation. Both cyclooxygenase 2 and WISP-1 were identified as effectors of the Wnt-mediated antiapoptotic signal. Soft agar assays showed that neither c-Myc nor Wnt-1 alone was sufficient to induce cellular transformation, but that Wnt and c-Myc coordinated in inducing transformation. Furthermore, coexpression of Wnt-1 and c-Myc induced high-frequency and rapid tumor growth in nude mice. Extensive apoptotic bodies were characteristic of c-Myc-induced tumors, but not tumors induced by coactivation of c-Myc and Wnt-1, indicating that the antiapoptotic function of Wnt-1 plays a critical role in the synergetic action between c-Myc and Wnt-1. These results elucidate the molecular mechanisms by which Wnt/beta-catenin inhibits apoptosis and provide new insight into Wnt signaling-mediated oncogenesis.  相似文献   
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