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1.
自19世纪中叶荷兰化学家GerardusMul-der从动物组织和植物体中提取出蛋白质以来,人们发现了越来越多的蛋白质,据估计生物界中蛋白质的种类可达1010~1012之多;在这如此众多的蛋白质中,功能性蛋白发挥着极其重要的生理功能。功能性蛋白也有人...  相似文献   

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氯霉素和四环素发挥活性的一个途径就是阻碍细菌蛋白质的分泌,其分泌功能是由其氨基端的信号序列决定的,该序列能将蛋白质引导到由SecY,E,G和A组成的转运蛋白复合体上。蛋白的转运还取决于融合蛋白的折叠特点,蛋白质转运到周质后的错误折叠可导致毒素聚集体形成,快速折叠还会使转运复合体发生拥堵,使所有的蛋白质分泌都受到抑制,导致细胞死亡。抗生素氯霉素和四环素处理细菌后会导致转运复合体中SecY的降解,造成致命的蛋白拥堵。现就抗生素氯霉素和四环素的干扰细菌蛋白质合成的作用机制以及导致SecY的降解来发挥阻碍细菌蛋白质分泌活性的一个新模式进行概述,以期为探讨新的靶向细菌的治疗方法提供科学依据。  相似文献   

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蛋白- 蛋白作用界面特征及界面预测研究进展   总被引:2,自引:2,他引:0       下载免费PDF全文
蛋白-蛋白界面与其余蛋白表面有明显的差别。本文对近年来国内外有关蛋白-蛋白界面几何学、物理学、化学、进化保守性等方面特征的研究概况及应用这些特征对单体中预测界面方法的研究进展于以综述。  相似文献   

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细胞膜蛋白与细胞骨架蛋白相互作用研究进展   总被引:1,自引:0,他引:1  
细胞膜蛋白与胞浆骨架蛋白的相互作用对于维持细胞正常形态,细胞粘附与信号传导有重要作用,含有4.1/JEF结构域的蛋白4.1超家族与含有PDZ结构域的MAGUK蛋白家族能结合多种膜蛋白胞内区与胞浆蛋白,在膜蛋白与胞浆蛋白之间建立联系,对于细胞、细胞-细胞间连接的正常结构与功能的维持有着重要作用。  相似文献   

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彭莉  张飞雄 《遗传》2001,23(2):173-176
近年来新发现的一类蛋白-染色体结构维持蛋白(SMC蛋白,structural maintenance of chromosome proteins)与染色体结构细胞周期性的动态变化紧密相关,它们参与有丝分裂染色体的集缩和分离,性染色体的剂量补偿效应,姐妹染色单体的内聚作用(cohesion),遗传重组和DNA修复等过程,本从生化特性和生物学功能两方面叙述了对SMC蛋白的研究。  相似文献   

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 淀粉样前体蛋白 (APP)是阿尔茨海默氏病 (AD)发病过程中有重要作用的蛋白 .利用酵母双杂交的方法发现低密度脂蛋白受体相关蛋白 6(LRP6)羧基端可和 APP羧基端片段相互作用 .分别构建了 APP和 LRP6的原核表达载体 ,并利用大肠杆菌获得 GST- APP1 0 6、MBP- LRP6融合蛋白 .体外相互作用研究证实了 APP羧基端和 LRP6羧基端之间的结合 .这使与 AD相关的两个重要蛋白 apo E和 APP联系起来 ,并提示 LRP6可能在 APP代谢和 Aβ产生中起重要作用 .  相似文献   

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The concept of prion is applied to protein modules that share the ability to switch between at least two conformational states and transmit one of these through intermolecular interaction and change of conformation. Although much progress has been achieved through the understanding of prions from organisms such as Saccharomyces cerevisiae, Podospora anserina, or Aplysia californica, the criteria that qualify a protein module as a prion are still unclear. In addition, the functionality of known prion domains fails to provide clues to understand the first identified prion, the mammalian infectious prion protein, PrP. To address these issues, we generated mammalian cellular models of expression of the C-terminal two helices of PrP, H2 and H3, which have been hypothesized, among other models, to hold the replication and conversion properties of the infectious PrP. We found that the H2H3 domain is an independent folding unit that undergoes glycosylations and glycosylphosphatidylinositol anchoring similar to full-length PrP. Surprisingly, in some conditions the normally folded H2H3 was able to systematically go through a conversion process and generate insoluble proteinase K-resistant aggregates. This structural switch involves the assembly of amyloid structures that bind thioflavin S and oligomers that are reactive to A11 antibody, which specifically detects protein oligomers from neurological disorders. Overall, we show that H2H3 is a conformational switch in a cellular context and is thus suggested to be a candidate for the conversion domain of PrP.  相似文献   

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Understanding the origins of cooperativity in proteins remains an important topic in protein folding. This study describes experimental folding/unfolding equilibrium and kinetic studies of the engineered protein Ubq-UIM, consisting of ubiquitin (Ubq) fused to the sequence of the ubiquitin interacting motif (UIM) via a short linker. Urea-induced folding/unfolding profiles of Ubq-UIM were monitored by far-UV circular dichroism and fluorescence spectroscopies and compared to those of the isolated Ubq domain. It was found that the equilibrium data for Ubq-UIM is inconsistent with a two-state model. Analysis of the kinetics of folding shows similarity in the folding transition state ensemble between Ubq and Ubq-UIM, suggesting that formation of Ubq domain is independent of UIM. The major contribution to the stabilization of Ubq-UIM, relative to Ubq, was found to be in the rates of unfolding. Moreover, it was found that the kinetic m-values for Ubq-UIM unfolding, monitored by different probes (far-UV circular dichroism and fluorescence spectroscopies), are different; thereby, further supporting deviations from a two-state behavior. A thermodynamic linkage model that involves four states was found to be applicable to the urea-induced unfolding of Ubq-UIM, which is in agreement with the previous temperature-induced unfolding study. The applicability of the model was further supported by site-directed variants of Ubq-UIM that have altered stabilities of Ubq/UIM interface and/or stabilities of individual Ubq- and UIM-domains. All variants show increased cooperativity and one variant, E43N_Ubq-UIM, appears to behave very close to an equilibrium two-state.  相似文献   

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Surface layers (S-layers) represent an almost universal feature of archaeal cell envelopes and are probably the most abundant bacterial cell proteins. S-layers are monomolecular crystalline structures of single protein or glycoprotein monomers that completely cover the cell surface during all stages of the cell growth cycle, thereby performing their intrinsic function under a constant intra- and intermolecular mechanical stress. In gram-positive bacteria, the individual S-layer proteins are anchored by a specific binding mechanism to polysaccharides (secondary cell wall polymers) that are linked to the underlying peptidoglycan layer. In this work, atomic force microscopy-based single-molecule force spectroscopy and a polyprotein approach are used to study the individual mechanical unfolding pathways of an S-layer protein. We uncover complex unfolding pathways involving the consecutive unfolding of structural intermediates, where a mechanical stability of 87 pN is revealed. Different initial extensibilities allow the hypothesis that S-layer proteins adapt highly stable, mechanically resilient conformations that are not extensible under the presence of a pulling force. Interestingly, a change of the unfolding pathway is observed when individual S-layer proteins interact with secondary cell wall polymers, which is a direct signature of a conformational change induced by the ligand. Moreover, the mechanical stability increases up to 110 pN. This work demonstrates that single-molecule force spectroscopy offers a powerful tool to detect subtle changes in the structure of an individual protein upon binding of a ligand and constitutes the first conformational study of surface layer proteins at the single-molecule level.  相似文献   

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A method to determine protein concentrations and absorptivities based on absorbance measurements of proteinase K digests has been developed. Molar absorptivities of proteinase K digests at 56 degrees C can be predicted by using the following equation: epsilon (M)(280)=5318 x (No.of Trp) + 1227 x (No.of Tyr) + 133 x (No.of Cys-Cys). Protein concentration in the digest can be determined by dividing the corrected digest solution absorbance by the calculated epsilon(M)(280). The absorptivity of a native protein can then be calculated by dividing the absorbance of the intact protein solution by the concentration value obtained for the digest solution. Precision of the experimental data is within +/-3%, and the error of the method does not exceed 4.5%. The accuracy of determination does not depend on the size of the protein, Trp/Tyr ratio, presence or absence of certain chromophores, or other structural factors. The method requires amounts of protein routinely used for absorbance measurements.  相似文献   

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Proteins are key players in most cellular processes. Therefore, their abundances are thought to be tightly regulated at the gene-expression level. Recent studies indicate, however, that steady-state cellular-protein concentrations correlate better across species than the levels of the corresponding mRNAs; this supports the existence of selective forces to maintain precise cellular-protein concentrations and homeostasis, even if gene-expression levels diverge. One of these forces might be the avoidance of protein aggregation because, in the cell, the folding of proteins into functional conformations might be in competition with anomalous aggregation into non-functional and usually toxic structures in a concentration-dependent manner. The data in the present work provide support for this hypothesis because, in E. coli, the experimental solubility of proteins correlates better with the cellular abundance than with the gene-expression levels. We found that the divergence between protein and mRNAs levels is low for high-abundance proteins. This suggests that because abundant proteins are at higher risk of aggregation, cellular concentrations need to be stringently regulated by gene expression.  相似文献   

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Here, we review the use of different biochemical approaches for biological synthesis of circular or backbone-cyclized proteins and peptides. These methods allow the production of circular polypeptides either in vitro or in vivo using standard recombinant DNA expression techniques. Protein circularization can significantly impact protein engineering and research in protein folding. Basic polymer theory predicts that circularization should lead to a net thermodynamic stabilization of a folded protein by reducing the entropy associated with the unfolded state. Protein cyclization also provides a valuable tool for exploring the effects of topology on protein folding kinetics. Furthermore, the biological production of cyclic polypeptides makes possible the production of cyclic polypeptide libraries. The generation of such libraries, which was previously restricted to the domain of synthetic chemists, now offers biologists access to highly diverse and stable molecular libraries for probing protein structure and function.  相似文献   

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The eukaryotic DNA replication protein Mcm10 associates with chromatin in early S-phase and is required for assembly and function of the replication fork protein machinery. Xenopus laevis (X) Mcm10 binds DNA via a highly conserved internal domain (ID) and a C-terminal domain (CTD) that is unique to higher eukaryotes. Although the structural basis of the interactions of the ID with DNA and polymerase α is known, little information is available for the CTD. We have identified the minimal DNA binding region of the XMcm10-CTD and determined its three-dimensional structure by solution NMR. The CTD contains a globular domain composed of two zinc binding motifs. NMR chemical shift perturbation and mutational analysis show that ssDNA binds only to the N-terminal (CCCH-type) zinc motif, whose structure is unique to Mcm10. The second (CCCC-type) zinc motif is not involved in DNA binding. However, it is structurally similar to the CCCC zinc ribbon in the N-terminal oligomerization domain of eukaryotic and archaeal MCM helicases. NMR analysis of a construct spanning both the ID and CTD reveals that the two DNA binding domains are structurally independent in solution, supporting a modular architecture for vertebrate Mcm10. Our results provide insight in the action of Mcm10 in the replisome and support a model in which it serves as a central scaffold through coupling of interactions with partner proteins and the DNA.  相似文献   

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Hydrophobins are surface active proteins produced by filamentous fungi. They have a role in fungal growth as structural components and in the interaction of fungi with their environment. They have, for example, been found to be important for aerial growth, and for the attachment of fungi to solid supports. Hydrophobins also render fungal structures, such as spores, hydrophobic. The biophysical properties of the isolated proteins are remarkable, such as strong adhesion, high surface activity and the formation of various self-assembled structures. The first high resolution three dimensional structure of a hydrophobin, HFBII from Trichoderma reesei, was recently solved. In this review, the properties of hydrophobins are analyzed in light of these new data. Various application possibilities are also discussed.  相似文献   

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目的建立一种高效提取、分离、纯化鼠尾胶原蛋白的方法。方法通过对鼠尾进行剥离获得鼠尾腱,用Tris-HCl缓冲液、胃蛋白酶处理获得鼠尾胶原蛋白原液、反复使用氯化钠溶液进行分级盐析、醋酸溶液复溶进行鼠尾胶原蛋白的纯化。超纯水透析除去无机盐类获得纯化的鼠尾胶原蛋白。通过SDS-PAGE蛋白质电泳、氨基酸含量分析等技术手段鉴定。结果本研究建立的方法可以获得高纯度的鼠尾胶原蛋白,纯度达到电泳纯。与国外进口的商业化鼠尾胶原蛋白产品相比无差异。研究了提取、分离、纯化参数对得率、纯度的影响,建立了最优的鼠尾胶原蛋白提取条件,胃蛋白酶用量:1∶500,酶解时间:72 h,盐析浓度:2 mol/L,提取所用酸溶液:0.05mol/L醋酸溶液。结论为鼠尾胶原蛋白的扩大化生产提供了合适的工艺参数,为大量获得鼠尾胶原蛋白并进行更深层次的功效方面研究提供了理论支持和实践基础。  相似文献   

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