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961.
利用代表性差异分析方法获得秋茄中两个编码亲环素(cyclophilin)蛋白的cDNA片段(称为SRGKC2和SRGKC3),该片段大小分别为282 bp和160 bp;序列分析表明:SRGKC2和SRGKC3是同一基因区域的不同长度片段,SRGKC3是SRGKC2片段的一部分。SRGKC2在84个氨基酸范围内与大戟属cyclophilin蛋白的氨基酸序列的一致性达到90%,SRGKC3在47个氨基酸范围内与蚕豆cyclophilin蛋白的一致性达到93%。Northem分析表明:盐分抑制SRGKC2片段的表达。依赖SRGKC2片段的序列资料,利用cDNA快速末端扩增(RACE)技术获取秋茄中cyclophilin基因的全长cDNA片段(命名为KCCYPl)(GenBank登录号:AY150052)。该cDNA全长约为0.9kb,含有一个516个核苷酸的完整开放阅读框,编码172个氨基酸,等电点为8.57,分子量18.2 KDa。42-49位氨基酸残基为推测的ATP/GTP结合位点A基序(P-loop),48-54位氨基酸残基是插入的7个氨基酸残基。文中还对SRGKC2在不同种中的表达状况进行了分析。 相似文献
963.
964.
Aldehyde oxidase is a member of the molybd-flavo enzyme family that catalyzes the hydroxylation of heterocycles and the oxidation of aldehydes into corresponding carboxylic acids. Aldehyde oxidase-1 (AOX1) is highly expressed in liver and is involved in the oxidation of a variety of aldehydes and nitrogenous heterocyclic compounds, including anti-cancer and immunosuppressive drugs. However, the physiological substrates of AOX1 have not been identified, and it was unknown how the expression of AOX1 is regulated. Here, we found that the AOX1 gene is regulated by the Nrf2 pathway. Two Nrf2 binding consensus elements (antioxidant responsive element, ARE) are located in the 5' upstream region of the rat AOX1 gene. Molecular analyses using reporter transfection analysis, EMSA, and ChIP analysis show that Nrf2 binds to and strongly activates the rat AOX1 gene. 相似文献
965.
966.
Dai L Corzo G Naoki H Andriantsiferana M Nakajima T 《Biochemical and biophysical research communications》2002,293(5):1514-1522
In the previous report [Biochem. Biophys. Res. Commun. 286 (2001) 820], we described a novel short linear peptide, IsCT, with cytolytic activity isolated from the venom of scorpion Opisthacanthus madagascariensis. From the same scorpion venom, we further purified and characterized three short linear peptides named IsCT2, IsCTf, and IsCT2f that shared high homology with IsCT, while with different C-terminal areas between IsCT/IsCT2 and IsCTf/IsCT2f. Structure-activity relationship was analyzed by performing vivo and vitro assays and circular dichroism spectroscopy. Like IsCT, IsCT2 showed broad activity spectra against microbes (Gram positive and negative bacteria as well as fungi) and relatively weak hemolytic activity against sheep red blood cells. It adopts an amphipathic alpha-helical structure in aqueous TFE and is able to disrupt the artificial membrane. However, the other two peptides IsCTf and IsCT2f showed no activity in antimicrobial or hemolytic assay. Furthermore, IsCTf and IsCT2f cannot form amphipathic alpha-helix while demonstrating random coil structure in aqueous TFE, which might result in their lost cytolytic activity. IsCTf and IsCT2f both exist in the crude venom and are proved to be enzymatic products from IsCT and IsCT2. Whether they have some other biological activity is still unclear. In addition, we got the cDNAs encoding the precursors of IsCT and IsCT2. Besides the signal peptide, they still contain an unusual acidic pro-peptide at the C-terminal that was quite different from other known precursors of scorpion venom peptides. The novel structure and biological activity of these peptides proposed them to be a new class in scorpion venom. 相似文献
967.
Organization and differential activation of a gene family encoding the plant defense enzyme chalcone synthase in Phaseolus vulgaris 总被引:27,自引:0,他引:27
968.
采用AtlasTM Rat cDNA Expression Array建立遗传性癫痫易感性P77PMC大鼠和正常对照Wistar大鼠的海马与大脑皮质基因表达谱,用Eagle EyeⅡStill Video System(Stratagene)图象分析仪分析两者基因表达谱差异.结果发现海马和大脑皮质中各有15个差异表达基因.海马组织中,12个基因在P77PMC大鼠中高表达而在正常对照Wistar大鼠中低表达,3个基因在正常对照Wistar大鼠中高表达,而在P77PMC大鼠中低表达;大脑皮质中,13个基因在P77PMC大鼠中高表达,而在正常对照Wistar大鼠中低表达,2个基因在正常对照Wistar大鼠中高表达,而在P77PMC大鼠中低表达. 结果说明,P77PMC大鼠与正常对照Wistar大鼠海马和大脑皮质存在多个差异表达基因,这些差异表达基因可能在癫痫的发生中扮演了重要角色. 相似文献
969.
W J Vallins N J Brand N Dabhade G Butler-Browne M H Yacoub P J Barton 《FEBS letters》1990,270(1-2):57-61
We have used the polymerase chain reaction (PCR) to synthesise a cDNA encoding part of human cardiac troponin I. Amplification was achieved using fully degenerate sets of oligonucleotides corresponding to conserved regions of amino acid sequence identified in other troponin I isoforms. The cloned PCR fragment was subsequently used to isolate full-length cDNAs from a cardiac cDNA library. We describe the approach, as a general cloning strategy starting from limited amino-acid sequence data and report the cloning, and complete amino acid sequence of human cardiac troponin I. Analysis of human development using these clones demonstrates early expression of this gene in the heart. 相似文献