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硫氧还蛋白相互作用蛋白(thioredoxin-interacting protein,TXNIP)又称维生素D3上调蛋白1,因其能够与硫氧还蛋白(thioredoxin,Trx)结合并抑制其活性和表达而得名。本文概述了TXNIP的发现与结构,及其自身通过发挥调节糖脂代谢的作用进而影响糖尿病前期的发生发展。并在此基础上总结了TXNIP参与糖尿病发生发展的2条主要途径:TXNIP通过拮抗Trx的抗凋亡作用来激发细胞凋亡信号导致胰岛细胞凋亡;TXNIP过表达促使胰岛细胞磷酸化,进而使抑癌相关蛋白质表达增加,最终引起胰岛细胞衰老。进一步重点阐述了TXNIP在糖尿病心肌病、糖尿病肾病、糖尿病性视网膜病等糖尿病并发症中的作用:TXNIP能通过各种间接途径干预信号通路,进一步参与氧化应激、细胞凋亡、激活炎症、细胞自噬及糖脂代谢等生理生化过程。TXNIP具有极其重要的生物学功能,深入了解TXNIP在糖尿病及其并发症中的影响机制,对糖尿病及其并发症的治疗具有重要意义。最后对TXNIP的研究进行了展望,未来可进一步着手研究TXNIP基因是如何与其他基因或危险因素协同作用,进而共同参与糖尿病及其并发症的发生发展,且TXNIP单个基因甲基化尚不能全面揭示糖尿病及其并发症发生的分子机制,这些后续的深入研究,将为在糖尿病及其并发症的诊断与治疗中作为靶标分子的应用奠定基础。 相似文献
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目的:探索硫氧还蛋白(Trx)抗体柱对Trx融合蛋白纯化的可行性。方法与结果:对含有Trx基因的质粒表达载体pTrxFus进行改造,在Trx读框之后加入6×His序列,并在大肠杆菌中表达C端带有6×His标签的Trx,经Ni2+柱亲和纯化后制备多克隆抗体;把经蛋白A纯化后的抗体偶联在溴化氰活化的琼脂糖凝胶上,制成Trx抗体柱;用此抗体柱纯化与Trx融合表达的豇豆胰蛋白酶抑制剂(CpTI),SDS-PAGE结果显示获得了纯度较高的Trx-CpTI。结论:用Trx抗体制成的免疫亲和层析柱可以有效纯化Trx融合蛋白。 相似文献
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硫氧还蛋白与神经退行性病变 总被引:2,自引:0,他引:2
神经退行性病变与胞内氧化还原失衡诱发的神经元损伤,死亡有密切关系,硫氧还原白参与维持胞内氧化还原平衡,在氧化应激中起重要的氧还调节作用,因此成为对抗神经退行性病变的重要蛋白之一。硫氧还蛋白可能通过激活某些有氧还调节功能的酶,清除自由基和调节细胞内分子通道等发挥对神经元的保护作用,对转基因动物的研究,进一步提示硫氧还蛋白在神经退行性病变的防治中可能发挥重要作用。 相似文献
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硫氧还蛋白(Trx)是体内广泛存在的氧化还原蛋白,其家族中两种重要的硫氧还蛋白:硫氧还蛋白1(thioredoxin1,Trx1)和硫氧还蛋白2(thioredoxin2,Trx2)都含有保守的-Cys-Gly-Pro-Cys-还原序列。由于Trx具有调节细胞生长增殖和抗凋亡的作用,因此Trx在凋亡途径中的作用机制就成为了对抗肿瘤的研究热点。 相似文献
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硫氧还蛋白与心血管疾病 总被引:4,自引:0,他引:4
硫氧还蛋白是细胞内最重要的二硫键还原酶,对维持细胞内蛋白质的还原状态并正常发挥功能着重要的作用,此外。硫氧还蛋白、硫氧还蛋白还原酶和硫氧还蛋白过氧化物酶组成了细胞内最重要的抗氧化系统之一,在对抗细胞的氧化应激上起着重要作用。心血管疾病是威胁人类健康的主要疾病,它与炎症反应和氧化应激有着密切的联系。文章将从硫氧还蛋白的抗氧化、抗炎、抗细胞凋亡,调控与炎症基因表达有关的核转录因子的转录活性,以及调节细胞内蛋白质的亚硝基化等诸多方面阐述硫氧还蛋白在防御心血管疾病方面可能具有的生物学功能。 相似文献
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应用硫氧还蛋白促进外源蛋白在大肠杆菌的可溶性表达 总被引:4,自引:0,他引:4
为了观察硫氧还蛋白(TrxA)促进外源蛋白在大肠杆菌中可溶性表达的作用,我们从质粒pET-32a(+)上克隆了trxA基因,构建了TrxA表达质粒pT-TrxA。将该质粒与其它蛋白基因的表达质粒共同转化E.coli并同时获得表达。结果表明,共表达TrxA可以明显促进外源蛋白,如甲状旁腺激素相关蛋白(PTHrP)、PTHrP受体(PTHrP-R)的血管内皮生长因子(VEGF)的可溶性表达。说明共表达 相似文献
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动物实验和临床研究表明,长期高浓度供氧可引起新生儿尤其早产儿产生氧化应激性损伤,多数学者认为这种氧化应激损伤在高氧肺损伤发生发展中起关键作用. 高氧时,氧化应激对肺泡Ⅱ型上皮细胞(alveolar epithelial cell type Ⅱ,AECⅡ)的影响包括对肺泡上皮细胞的损伤和对肺泡上皮细胞的保护.AECⅡ存活与凋亡有赖于细胞内的氧化还原状态, 通过改变细胞内的氧化还原状态可干预氧化应激.硫氧还蛋白系统( thioredoxin system )在生物体内通过抗氧化和氧化还原调节, 在基因表达、信号转导、细胞生长、细胞凋亡等方面起重要作用. 相似文献
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目的:利用基因工程的方法原核表达无标签的重组人硫氧还蛋白(rhTrx)并对其进行大规模表达、纯化和鉴定.方法:从人胚胎肾HEK293细胞中提取总RNA,反转录合成cDNA,经PCR扩增、酶切后连入pET-22b(+)载体构建重组质粒,重组质粒转化大肠杆菌BL21( DE3)感受态细胞,IPTG诱导表达,经两步离子交换层析纯化重组蛋白,采用SDS-PAGE、Western blotting、HPLC、MALDI-TOF-MS及经典的胰岛素二硫键还原法对重组蛋白进行鉴定.结果:构建成功了rhTrx基因表达载体;实现了rhTrx在原核细胞中的可溶性表达;纯化出的蛋白经SDS-PAGE和Western blotting分析证实为rhTrx;HPLC和MALDI-TOF-MS分析表明,纯化出的目的蛋白纯度大于95%;胰岛素二硫键还原法证实纯化出的rhTrx具有生物学活性.结论:成功构建了rhTrx的原核表达体系,建立了rhTrx的纯化和鉴定方法,为其进一步的理论研究和生产开发提供了有效基础数据. 相似文献
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《Bioscience, biotechnology, and biochemistry》2013,77(8):2214-2218
Curcumin analogs were first investigated for their inhibitory effects on thioredoxin reductase (TrxR). Most of them were more potent TrxR inhibitors than natural curcumin. The structure-activity relationship was summarized, and the curcumin analog was found to inhibit TrxR irreversibly in a time-dependent manner. The action was caused by covalent modification of the redox-active residues Cys497 and Sec498 in TrxR. 相似文献
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Thioredoxins, by reducing disulfide bridges are one of the main participants that regulate cellular redox balance. In plants, the thioredoxin system is particularly complex. The most well-known thioredoxins are the chloroplastic ones, that participate in the regulation of enzymatic activities during the transition between light and dark phases. The mitochondrial system composed of NADPH-dependent thioredoxin reductase and type o thioredoxin has only recently been described. The type h thioredoxin group is better known. Yeast complementation experiments demonstrated that Arabidopsis thaliana thioredoxins h have divergent functions, at least in Saccharomyces cerevisiae. They have diverse affinities for different target proteins, most probably because of structural differences. However, plant thioredoxin h functions still have to be defined. 相似文献
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单增李斯特菌是重要的食源性病原微生物,抗氧化应激是李斯特菌生存和致病的关键机制之一。活性氧(reactive oxygen species,ROS)浓度升高会破坏氧化还原平衡,使机体处于氧化胁迫的应激状态,进而导致生物大分子如蛋白质的损伤。蛋白质中半胱氨酸等含硫氨基酸对ROS尤其敏感,半胱氨酸残基脱氢氧化生成二硫键,可以稳定蛋白质空间构象,增加蛋白质的半衰期,进而使蛋白质免受损坏。抗氧化修复通常指的是对半胱氨酸残基的氧化还原过程,即二硫键的形成与打开。硫氧还蛋白家族包含硫氧还蛋白、谷氧还蛋白和Dsb-样蛋白系统,是生物体中常见的氧化还原修复系统。本文根据现有的文献报道,结合本课题组的研究进展,对单增李斯特菌硫氧还蛋白家族进行综述,以期为完善单增李斯特菌硫氧还蛋白调控系统提供参考。 相似文献
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Dark-grown carrot (Daucus carota L.) tissue cultures were found to contain both protein components of the NADP/thioredoxin system—NADP—thioredoxin reductase and the thioredoxin characteristic of heterotrophic systems, thioredoxin h. Thioredoxin h was purified to apparent homogeneity and, like typical bacterial counterparts, was a 12-kdalton (kDa) acidic protein capable of activating chloroplast NADP-malate dehydrogenase (EC 1.1.1.82) more effectively than fructose-1,6-bisphosphatase (EC 3.1.3.11). NADP-thioredoxin reductase (EC 1.6.4.5) was partially purified and found to be an arsenite-sensitive enzyme composed of two 34-kDa subunits. Carrot NADP-thioredoxin reductase resembled more closely its counterpart from bacteria rather than animal cells in acceptor (thioredoxin) specificity. Upon greening of the cells, the content of NADP-thioredoxin-reductase activity, and, to a lesser extent, thioredoxin h decreased. The results confirm the presence of a heterotrophic-type thioredoxin system in plant cells and raise the question of its physiological function.Abbreviations DTNB
dithiolbis(2-nitrobenzoic acid)
- FBPase
fructose-1,6-bisphosphatase
- FTR
terredoxin-thioredoxin, reductase
- NADP-MDH
NADP-malate dehydrogenase
- NTR
NADP-thioredoxin reductase
- SDS
sodium-dodecyl sulfate 相似文献
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Kouwen TR Andréll J Schrijver R Dubois JY Maher MJ Iwata S Carpenter EP van Dijl JM 《Journal of molecular biology》2008,379(3):520-534
Thioredoxin functions in nearly all organisms as the major thiol-disulfide oxidoreductase within the cytosol. Its prime purpose is to maintain cysteine-containing proteins in the reduced state by converting intramolecular disulfide bonds into dithiols in a disulfide exchange reaction. Thioredoxin has been reported to contribute to a wide variety of physiological functions by interacting with specific sets of substrates in different cell types. To investigate the function of the essential thioredoxin A (TrxA) in the low-GC Gram-positive bacterium Bacillus subtilis, we purified wild-type TrxA and three mutant TrxA proteins that lack either one or both of the two cysteine residues in the CxxC active site. The pure proteins were used for substrate-binding studies known as “mixed disulfide fishing” in which covalent disulfide-bonded reaction intermediates can be visualized. An unprecedented finding is that both active-site cysteine residues can form mixed disulfides with substrate proteins when the other active-site cysteine is absent, but only the N-terminal active-site cysteine forms stable interactions. A second novelty is that both single-cysteine mutant TrxA proteins form stable homodimers due to thiol oxidation of the remaining active-site cysteine residue. To investigate whether these dimers resemble mixed enzyme-substrate disulfides, the structure of the most abundant dimer, C32S, was characterized by X-ray crystallography. This yielded a high-resolution (1.5Å) X-ray crystallographic structure of a thioredoxin homodimer from a low-GC Gram-positive bacterium. The C32S TrxA dimer can be regarded as a mixed disulfide reaction intermediate of thioredoxin, which reveals the diversity of thioredoxin/substrate-binding modes. 相似文献
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Like many other soluble chloroplastic enzymes, thioredoxin f is nuclear-encoded and expressed as a precursor protein. After synthesis in the cytosol, it is imported into the chloroplast with subsequent cleavage of the transit sequence in the stroma. We report the expression and the partial purification of the recombinant precursor thioredoxin f protein. The prethioredoxin f was found to be located essentially in the insoluble Echerichia coli fraction, but could be renatured after urea treatment followed by dialysis. The renatured protein was active in the dithiothreitol- and thioredoxin-dependent activation of NADP malate dehydrogenase and also of fructose bisphosphatase and in the ferredoxin-thioredoxin-dependent fructose bisphosphatase activation. These data are discussed in relation with the known properties of mature thioredoxin f. 相似文献
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硫氧还蛋白(Trx)属于巯基-二硫键氧化还原酶家族, 通过作用于底物蛋白侧链2个半胱氨酸残基之间的二硫键(还原、异构和转移)来调控胞内蛋白的结构和功能。叶绿体Trx系统包括Trx及Trx类似蛋白、铁氧还蛋白(Fd)依赖的硫氧还蛋白还原酶(FTR)和还原型烟酰腺嘌呤二核苷磷酸(NADPH)依赖的硫氧还蛋白还原酶C (NTRC)。除了基质蛋白酶类活性变化及叶绿体蛋白的转运受Trx系统调控之外, 在叶绿体中还存在1条跨类囊体膜的还原势传递途径, 把基质Trx的还原势经跨膜转运蛋白介导, 最终传递给类囊体腔蛋白。FTR和NTRC共同作用维持叶绿体的氧化还原平衡。该文对叶绿体硫氧还蛋白系统的调节机制进行了综述, 同时讨论了叶绿体硫氧还蛋白系统对维持植物光合效率的重要意义。 相似文献