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31.
Cell signaling and heat shock protein expression 总被引:5,自引:0,他引:5
Exposure of cells and organs to heat shock is associated with numerous changes in various cellular metabolic parameters and overexpression of proteins collectively known as heat shock proteins (HSP). In this communication we review the cell-signaling events that are altered in response to heat shock as they relate to the subsequent induction of HSP 70 kd (HSP-70) expression. We also review the mechanisms by which HSP-70 is involved in conferring cytoprotective effects. The possibility of altering HSP expression through manipulations of the cell-signal process has clinical importance.The opinions or assertions contained herein are the private views of the authors and are not to be construed as official or reflecting the views of the Department of the Army or Department of Defense. 相似文献
32.
Gong B Hong F Kohm C Bonham L Klein P 《Bioorganic & medicinal chemistry letters》2004,14(6):1455-1459
2-Arylbenzoxazoles, benzothiazoles and benzimidazoles were identified as new classes of potent, isoform specific inhibitors of lysophosphatidic acid acyltransferase-beta (LPAAT-beta). Effects of selected inhibitors on proliferation of tumor cells in vitro were investigated. 相似文献
33.
STAT6 ASODN对哮喘小鼠脾淋巴细胞影响的实验研究 总被引:1,自引:0,他引:1
目的研究STAT6反义寡核苷酸对哮喘小鼠脾淋巴细胞的影响作用。方法实验细胞分组:正常鼠空白组(A组)、正常鼠OVA组(B组)、哮喘空白组(C组)、哮喘OVA组(D组)、哮喘治疗组(E组)。正常设计并人工合成一段互补于小鼠STAT6 mRNA翻译起始区271-290的反义寡核苷酸片段,全链硫代修饰。用卵白蛋白和氢氧化铝复制哮喘模型,用淋巴细胞分离液分离脾淋巴细胞,进行体外培养并导入由阳离子脂质体转染剂Geneshuttle携带的反义寡核苷酸,观察反义寡核苷酸的转染对脾淋巴细胞STAT6蛋白表达水平及细胞培养上清中IL-4分泌水平的影响。免疫细胞化学观察脾淋巴细胞中STAT6蛋白的表达水平,同时采用酶联免疫吸附(ELISA)法测定脾细胞培养上清液中IL-4的浓度。结果D组细胞STAT6蛋白表达明显高于其余各组,均具有显著性差异(P均<0.01),STAT6 ASODN转染后,E组细胞该蛋白的表达量明显下降(P<0.01);D组脾淋巴细胞培养上清中IL-4分泌水平明显高于其余各组,均具有显著性差异(P均<0.01);STAT6 ASODN转染后,E组培养上清中IL-4分泌水平显著低于D组(P<0.01)。结论STAT6 ASODN可特异性抑制哮喘鼠脾淋巴细胞中STAT6蛋白的表达,并可特异性抑制脾淋巴细胞中IL-4的分泌,为反义基因技术治疗哮喘提供了依据。 相似文献
34.
A new coding sequence of the procarboxypeptidase B gene was obtained from SD rat fresh pancreas by RT-PCR and highly expressed in Escherichia coli in inclusion bodies. The folded procarboxypeptidase B was subjected to trypsin enzymatic cleavage to produce active carboxypeptidase B, subsequently, carboxypeptidase B was effectively purified with anion exchange chromatography DEAE-FF and hydrophobic interaction chromatography Octyl FF, as a result, 40 mg carboxypeptidase B per litre cell culture with specific activity 7.42 u/mg was achieved. Further research showed that the obtained recombinant carboxypeptidase B could substitute carboxypeptidase B isolated from pancreas. 相似文献
35.
包埋法固定化对硫氧化微生物菌群结构和功能的影响 总被引:1,自引:0,他引:1
【目的】为探讨包埋法固定化过程对硫氧化菌群硫化物去除能力及菌群微生物群落结构的影响,【方法】以聚乙烯醇-海藻酸钠-活性炭为载体,对硫氧化菌群进行了固定化,并采用富含硫化物的无机盐培养基,对比固定化与非固定化硫氧化菌群对硫化物的氧化去除能力。同时,利用PCR-DGGE技术,探讨硫氧化菌群在固定化前后以及在硫化物氧化去除过程中微生物群落结构变化。【结果】在对硫氧化菌群进行固定化之后,12 h之内对硫化物的最大去除能力从1000 mg/L下降为600 mg/L。硫氧化菌群的微生物群落结构发生了明显变化,但菌群中的硫氧化菌Catenococcus thiocycli未受影响,硫氧化菌Thioclava pacifica在菌群中的地位反而得到了强化。【结论】受制于底物在载体材料中的扩散迁移效率,硫氧化菌群对硫化物的氧化去除能力在固定化之后有所下降。由于不同微生物对固定化形成的微环境的适应能力以及对载体附着能力的不同,固定化对硫氧化菌群的微生物群落结构产生较大影响。 相似文献
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In this study, Dendrobium officinale polysaccharide (named DOPS-1) was isolated from the stems of Dendrobium officinale by hot-water extraction and purified by using Sephadex G-150 column chromatography. The structural characterization, antioxidant and cytotoxic activity were carried out. Based on the results of HPLC, GC, Congo red experiment, together with periodate oxidation, Smith degradation, SEM, FT-IR, and NMR spectral analysis, it expressed that DOPS-1 was largely composed of mannose, glucose and galacturonic acid in a molar ratio of 3.2 : 1.3 : 1. The molecular weight of DOPS-1 was 1530 kDa and the main chain was composed of (1→4)-β-D-Glcp, (1→4)-β-D-Manp and 2-O-acetyl-(1→4)-β-D-Manp. The measurement results of antioxidant activity showed that DOPS-1 had the strong scavenging activities on hydroxyl radicals, DPPH radicals and superoxide radicals and the high reducing ability in vitro. Moreover, DOPS-1 was cytotoxic to all three human cancer cells of MDA-MB-231, A549 and HepG2. 相似文献
40.
Sexual plant reproduction is a critical developmental step in the life cycle of higher plants, to allow maternal and paternal genes to be transmitted in a highly regulated manner to the next generation. During evolution, a whole set of signal transduction machinery is developed by plants to ensure an error-free recognition between male and female gametes and initiation of zygotic program. In the past few years, the molecular machineries underlying this biological process have been elucidated, particularly on the importance of synergid cells in pollen tube guidance, the Ca++ spike as the immediate response of fertilization and the epigenetic regulation of parental gene expressions in early zygotic embryogenesis. This review outlines the most recent development in this area. 相似文献