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Hidden Sequence Repeats: Additional Evidence for the Origin of TIM-Barrel Family
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作者 Xiaofeng Ji Yuan Zheng +1 位作者 Zhipeng Wang Jun Sheng 《Journal of Biomedical Science and Engineering》 2016年第6期307-314,共8页
Most proteins adopt an approximate structural symmetry. However, they have no symmetry detectable in their sequences and it is unclear for most of these proteins whether their structural symmetry originates from dupli... Most proteins adopt an approximate structural symmetry. However, they have no symmetry detectable in their sequences and it is unclear for most of these proteins whether their structural symmetry originates from duplication. As one of the six popular folds (super-folds) possessing an approximate structural symmetry, the triosephosphate isomerase barrel (TIM-barrel) domain has been widely studied. Using modified recurrent quantification analysis of primary sequences, we identified the same 2-, 3-, and 4-fold symmetry pattern as their tertiary structures. This result indicates that the symmetry in tertiary structure is coded by symmetry in the primary sequence and that the TIM-barrel adopts a 2-, 3-, or 4-fold repeat pattern during evolution. This discovery will be useful for understanding the evolutionary mechanisms of this protein family and the symmetry pattern that may be a clue into the ancient origin of duplication of half-barrels or the β a unit. 展开更多
关键词 tim-barrel Hidden Symmetry Primary Sequences Repeat Pattern Recurrence Quantification Analysis
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基于结构的单绕蛋白聚类图构建与分析
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作者 宋新蕊 李晓琴 《生物信息学》 2013年第1期44-49,共6页
蛋白质分子进化规律研究是分子进化研究的重点,对揭示生命起源与进化机制有重要意义。本文对已知空间结构及物种信息的单绕蛋白,利用结构比对信息,构建了不同层次单绕样本系统聚类图。分析发现:功能相似蛋白存在明显聚集现象,同一超家... 蛋白质分子进化规律研究是分子进化研究的重点,对揭示生命起源与进化机制有重要意义。本文对已知空间结构及物种信息的单绕蛋白,利用结构比对信息,构建了不同层次单绕样本系统聚类图。分析发现:功能相似蛋白存在明显聚集现象,同一超家族样本基本聚在一个大支中,同一家族样本集中在所属超家族下的小支中,功能约束下单绕样本聚类图与物种进化图有较好对应关系。结果表明:单绕蛋白的结构演化反映了蛋白质功能的约束,特定功能单绕样本的结构差异具有种属特异性,结构演化包含了物种进化信息。 展开更多
关键词 单绕 结构比对 系统聚类 物种进化
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High-Resolution Crystal Structure and Redox Properties of Chloroplastic Triosephosphate Isomerase from Chlamydomonas reinhardtii 被引量:8
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作者 Mirko Zaffagnini Laure Michelet +6 位作者 Chiara Sciabolini Nastasia Di Giacinto Samuel Morisse Christophe H. Marchand Paolo Trost Simona Fermani Stephane D Lemaire 《Molecular Plant》 SCIE CAS CSCD 2014年第1期101-120,共20页
Triosephosphate isomerase (TPI) catalyzes the interconversion of glyceraldehyde-3-phosphate to dihydroxyacetone phosphate. Photosynthetic organisms generally contain two isoforms of TPI located in both cytoplasm and... Triosephosphate isomerase (TPI) catalyzes the interconversion of glyceraldehyde-3-phosphate to dihydroxyacetone phosphate. Photosynthetic organisms generally contain two isoforms of TPI located in both cytoplasm and chloroplasts. While the cytoplasmic TPI is involved in the glycolysis, the chloroplastic isoform participates in the Calvin-Benson cycle, a key photosynthetic process responsible for carbon fixation. Compared with its cytoplasmic counterpart, the functional features of chloroplastic TPI have been poorly investigated and its three-dimensional structure has not been solved. Recently, several studies proposed TPI as a potential target of different redox modifications including dithiol/disulfide interchanges, glutathionylation, and nitrosylation. However, neither the effects on protein activity nor the molecular mechanisms underlying these redox modifications have been investigated. Here, we have produced recombinantly and purified TPI from the unicellular green alga Chlamydomonas reinhardtii (Cr). The biochemical properties of the enzyme were delineated and its crystallographic structure was determined at a resolution of 1.1 A. CrTPI is a homodimer with subunits containing the typical (β/α)8-barrel fold. Although no evidence for TRX regulation was obtained, CrTPI was found to undergo glutathionylation by oxidized glutathione and trans-nitrosylation by nitrosoglutathione, confirming its sensitivity to multiple redox modifications. 展开更多
关键词 triosephosphate isomerase three-dimensional structure tim-barrel thiol-based redox regulation transnitrosylation.
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