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线粒体解偶联蛋白UCP2的研究进展 总被引:2,自引:0,他引:2
本文综述了线粒体解偶联蛋白2(uncoupling protein2,UCP2)研究方面的进展。UCP2定位于线粒体内膜上,通过消散线粒体内膜的质子梯度调节线粒体的功能,包括线粒体内膜电位、ATP合成、呼吸链ROS产生、线粒体钙库的存储和释放等。目前,UCP2的质子漏机理并不清楚,但体内实验表明UCP2活性可被过氧化物激活。特别是近年来UCP2调控胰岛素分泌方面的研究取得了重要进展。 相似文献
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解偶联蛋白4的线粒体保护作用 总被引:1,自引:0,他引:1
线粒体解偶联蛋白(UCPs)是近年来发现的线粒体膜蛋白家族中的新成员.研究表明,解偶联蛋白4(UCP4)有调节线粒体膜电位、减少氧自由基的生成、调节细胞内钙离子浓度等作用,受细胞代谢、甲状腺激素,以及儿茶酚胺等调节.UCP4主要分布于大脑皮质和海马区,可能在脑血管病、精神分裂症、变性病等线粒体易受损的疾病中起重要作用. 相似文献
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有些植物的花器官能够主动产生大量热能,这种类似于动物的生热行为具有多样的生物学功能,对生热植物的生殖发育至关重要.开花生热及其调控机制的研究已引起研究者的极大关注.红外成像技术的发展为开花生热过程的动态监测和生热组织的精确定位提供了至关重要的技术支撑.交替氧化酶(alternative oxidase,AOX)和解偶联... 相似文献
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解偶联蛋白2对活性氧的抑制作用 总被引:1,自引:0,他引:1
线粒体在能量代谢和自由基代谢中占据十分重要的地位。电子传递过程中形成的活性氧(reactive oxygen species,ROS)履行着众多生理功能,但过多或持续存在的ROS可能与癌症、衰老、糖尿病、动脉硬化、局部缺血或再灌注损伤等的发生有关。解偶联蛋白2(uncoupling protein 2,UCP2)作为线粒体内膜质子转运家族中的一个新成员,通过解偶联作用能降低线粒体内膜电势,使活性氢产生减少。UCP2抑制ROS产生的作用日益受到关注。 相似文献
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目的:构建解偶联蛋白UCP1启动子荧光素酶报告基因载体,为寻找调控UCP1表达的小分子化合物提供有效工具。方法:从小鼠基因组DNA中PCR扩增小鼠UCP1启动子上游2000 bp序列,并将该序列连接到荧光素酶报告基因载体p GL3-basic中,构建p GL3-UCP1启动子。测序正确后,提取质粒,然后将上述载体与p RL-TK载体共转染至HEK293细胞、小鼠白色脂肪前体细胞和小鼠棕色脂肪前体细胞,48 h后裂解细胞检测荧光素酶的活性。结果:通过PCR成功扩增获得了目的片段,并将其克隆至p GL3-basic中。与细胞内源UCP1表达水平相似,荧光素酶报告系统表明构建的p GL3-UCP1在棕色脂肪细胞中启动子活性最高,在白色脂肪细胞中活性较低,在HEK293细胞中基本没有活性。同时β3肾上腺素受体激动剂CL 316,243同样能够上调p GL3-UCP1的启动子活性。结论:成功构建了小鼠UCP1启动子荧光素酶报告基因载体,并证明在棕色脂肪细胞中,该启动子具有很强的启动子活性,而在白色脂肪和HEK293细胞中,启动子活性很低。该启动子报告系统有望为寻找激活UCP1的小分子化合物提供重要平台。 相似文献
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STK11蛋白(serine/threonine kinase11)是近年来发现的具有多种重要功能的蛋白,可参与调控细胞周期、p53介导的细胞凋亡、ras诱导的细胞转化、细胞极化等多种生物学过程。利用大肠杆菌高效表达有活性的人STK11蛋白,可为其结构和功能的深入研究打下良好基础。利用本室克隆的人STK11 cDNA和原核表达载体pET-44a( )构建带有Nus融合标签的诱导型表达载体pET-Nus-STK11,在不同的大肠杆菌宿主中诱导表达。SDS-PAGE和Western blot检测表明,在BL21(DE3)宿主中表达的融合蛋白主要以包涵体形式存在,占菌体总蛋白的8.9%;在Rosetta-gami(DE3)pLysS宿主中主要表达为可溶性蛋白,占菌体总蛋白的16.7%。而经纯化和包涵体蛋白复性处理后,以Chariot介导重组融合蛋白进入人肝癌细胞SMMC-7721检测其对细胞生长和细胞周期的影响。与对照组相比,BL21(DE3)中表达的Nus-STK11蛋白几乎无抑制活性;而Rosetta-gami(DE3)pLysS中表达的Nus-STK11蛋白可以显著抑制SMMC-7721细胞的生长,抑制率达47.05%,并导致细胞周期的G0/G1期阻滞,证实表达的重组融合蛋白具有明显的生物学活性。上述结果为在大肠杆菌中成功表达有活性的重组STK11蛋白的首次报道。 相似文献
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Jezek P Zácková M Kosarová J Rodrigues ET Madeira VM Vicente JA 《Journal of bioenergetics and biomembranes》2000,32(6):549-561
The presence of plant-uncoupling mitochondrial protein (PUMP), previously described by Vercesi et al. (1995), was screened in mitochondria of various organs or tissues of several plant species. This was done functionally, by monitoring purine nucleotide-sensitive linoleic acid-induced uncoupling, or by Western blots. The following findings were established: (1) PUMP was found in most of the higher plants tested; (2) since ATP inhibition of linoleic acid-induced membrane potential decrease varied, PUMP content might differ in different plant tissues, as observed with mitochondria from maize roots, maize seeds, spinach leaves, wheat shoots, carrot roots, cauliflower, broccoli, maize shoots, turnip root, and potato calli. Western blots also indicated PUMP presence in oat shoots, carnation petals, onion bulbs, red beet root, green cabbage, and Sedum leaves. (3) PUMP was not detected in mushrooms. We conclude that PUMP is likely present in the mitochondria of organs and tissues of all higher plants. 相似文献
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Yeast ferrochelatase: expression in a baculovirus system and purification of the expression protein.
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M. G. Eldridge H. A. Dailey 《Protein science : a publication of the Protein Society》1992,1(2):271-277
The terminal step of the heme biosynthetic pathway is catalyzed by the enzyme ferrochelatase (EC 4.99.1.1). In eukaryotes this enzyme is bound to the inner mitochondrial membrane with its active site facing the matrix side of the membrane. Previously this laboratory has characterized this enzyme via kinetic and protein chemical modification techniques, and with the recent cloning of the enzyme from yeast, mouse, and human sources it now becomes possible to approach structure-function questions by using site-directed mutagenesis. Of primary significance to this is the development of an efficient expression vector. This is of particular significance for ferrochelatase, as it is a low-abundance protein whose DNA coding sequence has a very low codon bias. In the current work we describe the production of yeast ferrochelatase in a baculovirus system. This system is shown to be an excellent one in which to produce large quantities of active ferrochelatase. The expressed enzyme is membrane associated and is not released into the growth medium either during or after virus development and cell lysis. The expressed protein can be purified in a procedure that requires only 1 day and makes use of a Pharmacia Hi Trap blue affinity column. The measured Km's for the substrates mesoporphyrin and iron are the same as those reported previously for the yeast enzyme. To our knowledge this is the first example of a mitochondrial membrane protein that has been expressed in a baculovirus system. 相似文献
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Haruaki Kageyama Asako Suga Misato Kashiba Jun Oka Toshimasa Osaka Takayuki Kashiwa Tsutomu Hirano Kiyomitsu Nemoto Yoshio Namba Daniel Ricquier Jean-Paul Giacobino Shuji Inoue 《FEBS letters》1998,440(3)
Streptozotocin (STZ)-induced diabetic animals are vulnerable to cold stress. Uncoupling proteins (UCPs) play an important role in regulating thermogenesis. We investigated the gene expressions of UCPs in brown adipose tissue (BAT), white adipose tissue (WAT), liver and gastrocnemius muscle of STZ-diabetic rats using Northern blot. UCP-1, -2 and -3 mRNA expressions in BAT were all remarkably lower in STZ-diabetic rats than those in control rats. Both UCP-2 and -3 gene expressions in gastrocnemius muscle were substantially elevated in STZ-diabetic rats and insulin treatment restored UCP gene expressions to normal levels. These results suggest that in STZ-diabetic rats, the overexpression of UCP-2 and UCP-3 in skeletal muscle provides a defense against hypothermogenesis caused by decreased UCPs in BAT. 相似文献
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目的:在大肠杆菌中表达沙门菌外膜蛋白(OMP)D,纯化后制备兔抗OMPD抗体。方法:用PCR方法从鼠伤寒沙门菌中扩增出ompD基因,并插入融合表达载体pET-28a(+)的多克隆位点,构建重组表达质粒pET28a(+)-ompD;以重组质粒转化大肠杆菌BL21(DE3),筛选阳性重组菌株,经IPTG诱导目的蛋白表达,在变性条件下对目的蛋白进行亲和层析纯化;以表达的OMPD蛋白免疫家兔,制备抗OMPD的多克隆抗体并进行鉴定。结果:扩增了ompD基因,测序证实正确后亚克隆于表达载体pET-28a(+)中,经PCR筛选和酶切鉴定获得阳性克隆,经诱导在大肠杆菌中表达出相对分子质量为40×103的目的蛋白并进行纯化;纯化的OMPD免疫家兔后,能有效地刺激特异性抗体的产生,抗血清的效价达到1∶10000以上,且具有良好的特异性。结论:构建ompD基因的原核表达载体,并在大肠杆菌中获得高效表达;制备出兔抗OMPD抗体,效价及特异性均良好,为进一步制备肠黏膜高亲和力疫苗奠定了基础。 相似文献
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Uncoupling protein 2 (UCP2) belongs to the UCP family, and is distributed in many organs including the brain. Although UCP2 is known to be related to many functions such as the regulation of insulin secretion or the scavenging of the radicals, the role of UCP2 in the central nervous system remains unclear. In this report, rat UCP2 (rUCP2) and its mutants were overexpressed in the PC12h cells to determine the physiological roles played by UCP2 in neural cells and to elucidate the mechanisms that regulate these functions. It was found that rUCP2 was activated by the stimulation of the cAMP-protein kinase A (PKA) cascade. Moreover, the activation of rUCP2 suppressed intracellular ATP levels and inhibited the cAMP-dependent increase of dopamine secretion. Thus, UCP2 appears to be regulated by the excitatory stimulus via the cAMP-PKA cascade and serves to negatively control the synaptic output by reducing intracellular ATP levels. 相似文献
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Xiaoxue Zhang Hengyi Xie David Iaea George Khelashvili Harel Weinstein Frederick R. Maxfield 《The Journal of biological chemistry》2022,298(7)
There is substantial evidence for extensive nonvesicular sterol transport in cells. For example, lipid transfer by the steroidogenic acute regulator-related proteins (StarD) containing a StarT domain has been shown to involve several pathways of nonvesicular trafficking. Among the soluble StarT domain–containing proteins, StarD4 is expressed in most tissues and has been shown to be an effective sterol transfer protein. However, it was unclear whether the lipid composition of donor or acceptor membranes played a role in modulating StarD4-mediated transport. Here, we used fluorescence-based assays to demonstrate a phosphatidylinositol phosphate (PIP)-selective mechanism by which StarD4 can preferentially extract sterol from liposome membranes containing certain PIPs (especially, PI(4,5)P2 and to a lesser degree PI(3,5)P2). Monophosphorylated PIPs and other anionic lipids had a smaller effect on sterol transport. This enhancement of transport was less effective when the same PIPs were present in the acceptor membranes. Furthermore, using molecular dynamics (MD) simulations, we mapped the key interaction sites of StarD4 with PIP-containing membranes and identified residues that are important for this interaction and for accelerated sterol transport activity. We show that StarD4 recognizes membrane-specific PIPs through specific interaction with the geometry of the PIP headgroup as well as the surrounding membrane environment. Finally, we also observed that StarD4 can deform membranes upon longer incubations. Taken together, these results suggest a mechanism by which PIPs modulate cholesterol transfer activity via StarD4. 相似文献
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目的 在对乙型肝炎病毒非结构蛋白HBx研究的过程中,发现体外表达HBx蛋白产物的稳定性存在差异.为了了解其中的原因,拟通过原核表达方式进行分析.方法 以包含全长HBV DNA的质粒pEco63为模板,通过PCR反应,扩增HBV X基因全长序列(1~154氨基酸)和截短序列(48~104氨基酸,48~146氨基酸,98~146氨基酸),将这几种不同长度和位置的HBX DNA序列克隆到pGEX4T-2原核表达载体中,并通过下游引物设计中引入6×组氨酸标签序列.结果 最终成功构建N端融合GST蛋白标签序列和C端融合6×组氨酸标签序列的4种HBx重组表达载体.将4种包含不同长度HBx的重组质粒转化大肠埃希菌Rosetta,培养至菌液浓度A值大约0.6左右,加入终浓度0.1 mmol/L的IPTG进行诱导表达.提取全菌蛋白通过Western印迹对HBx各重组蛋白产物的N端和C端进行检测.结论 在分段表达的HBx重组蛋白中发生了多处局部的断裂,而断裂部位主要集中于GST蛋白上.而造成这一结果的原因可能与HBx蛋白功能区域暴露后与GST相互作用有关. 相似文献
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Inaba T Ishijima A Honda M Nomura F Takiguchi K Hotani H 《Journal of molecular biology》2005,348(2):325-333
Living cells develop their own characteristic shapes depending on their physiological functions, and their morphologies are based on the mechanical characteristics of the cytoskeleton and of membranes. To investigate the role of lipid membranes in morphogenesis, we constructed a simple system that can manipulate liposomes and measure the forces required to transform their shapes. Two polystyrene beads (1 microm in diameter) were encapsulated in giant liposomes and were manipulated using double-beam laser tweezers. Without any specific interaction between the lipid membrane and beads, mechanical forces could be applied to the liposome membrane from the inside. Spherical liposomes transformed into a lemon shape with increasing tension, and tubular membrane projections were subsequently generated in the tips at either end. This process is similar to the liposomal transformation caused by elongation of encapsulated cytoskeletons. In the elongation stage of lemon-shaped liposomes, the force required for the transformation became larger as the end-to-end length increased. Just before the tubular membrane was generated, the force reached the maximum strength (approximately 11 pN). However, immediately after the tubular membrane developed, the force suddenly decreased and was maintained at a constant strength (approximately 4 pN) that was independent of further tube elongation or shortening, even though there was no excess membrane reservoir as occurs in living cells. When the tube length was shortened to approximately 2 microm, the liposome reversed to a lemon shape and the force temporarily increased (to approximately 7 pN). These results indicate that the simple application of mechanical force is sufficient to form a protrusion in a membrane, that a critical force and length is needed to form and to maintain the protrusion, and suggest that the lipid bilayer itself has the ability to buffer the membrane tension. 相似文献
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Yanlu Zhang Liehua Wu Jingai Yu JianFeng Mei Yu Yi JianShu Chen 《Preparative biochemistry & biotechnology》2017,47(9):934-938
Human thymic stromal lymphopoietin (hTSLP) protein plays a central role in inflammation. Characterizing properties of hTSLP requires a recombinant overexpression system that produces correctly folded, active hTSLP. In this report, an efficient overexpression system for the production of hTSLP was developed. We constructed expression plasmids of the full-length hTslp gene with or without the signal peptide and transformed the plasmids into Escherichia coli. The design of the recombinant proteins included an N-terminal His-tag, which facilitated purification. An affinity gradient elution method was used to improve recovery and concentration levels of denatured hTSLP, with 90% purity observed following affinity chromatography. Refolding of the denatured hTSLP was tested using four different protein refolding approaches. The optimal refolding conditions involved stepwise buffer exchanges to reduce the urea concentration from 4 to 0?M in 50?mM Tris (pH 8.0), 1?mM EDTA, 50?mM NaCl, 10% glycerol, 400?mM L-Arg, 0.2?mM oxidized glutathione, and 2?mM reduced glutathione. The activity of the refolded recombinant hTSLP protein was measured by an ELISA assay. Interestingly, the presence of N-terminal signal peptide inhibited the overexpression of hTSLP in E. coli. The amount of recombinant hTSLP protein purified reached a level of 2.52?×?10?3?mg/L. 相似文献
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本文旨在通过观察棕榈酸对模拟高原低氧大鼠离体脑线粒体解耦联蛋白(uncoupling proteins,UCPs)活性的影响及脑线粒体质子漏与膜电位的改变,探讨UCPs在介导游离脂肪酸对低氧时线粒体氧化磷酸化功能改变中的作用.将SpragueDawley大鼠随机分为对照组、急性低氧组和慢性低氧组.低氧大鼠于低压舱内模拟海拔5 000 m高原23 h/d作低氧暴露,分别连续低氧3 d和30 d.用差速密度梯度离心法提取脑线粒体,[3H-GTP法测定UCPs含量与活性,TPMP 电极与Clark氧电极结合法测量线粒体质子漏,罗丹明123荧光法测定线粒体膜电位.结果显示,低氧使脑线粒体内UCPs含量与活性升高、质子漏增加、线粒体膜电位降低;同时,低氧暴露降低脑线粒体对棕榈酸的反应性,UCPs活性的改变率低于对照组,且线粒体UCPs含量、质子漏、膜电位变化率亦出现相同趋势.线粒体质子漏与反映UCPs活性的Kd值呈线性负相关(P<0.01 r=-0.906),与反映UCPs含量的Bmax呈线性正相关(P<0.01,r=0.856),与膜电位呈线性负相关(P<0.01,r=-0.880).以上结果提示,低氧导致的脑线粒体质子漏增加及膜电位降低与线粒体内UCPs活性升高有关,同时低氧暴露能降低脑线粒体对棕榈酸的反应性,提示在高原低氧环境下,游离脂肪酸升高在维持线粒体能量代谢中起着自身保护和调节机制. 相似文献