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首页> 外文期刊>The biochemical journal >Identification of regions responsible for the open conformation of S100A10 using chimaeric S100A11–S100A10 proteins
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Identification of regions responsible for the open conformation of S100A10 using chimaeric S100A11–S100A10 proteins

机译:使用嵌合S100A11–S100A10蛋白鉴定负责S100A10开放构象的区域

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pS100A11 is a dimeric EF-hand calcium-binding protein. Calcium binding to S100A11 results in a large conformational change that uncovers a broad hydrophobic surface used to interact with phospholipid-binding proteins (annexins A1 and A2) and facilitate membrane vesiculation events. In contrast with other S100 proteins, S100A10 is unable to bind calcium due to deletion and substitution of calcium-ligating residues. Despite this, calcium-free S100A10 assumes an ‘open’ conformation that is very similar to S100A11 in its calcium-bound state. To understand how S100A10 is able to adopt an open conformation in the absence of calcium, seven chimaeric proteins were constructed where regions from calcium-binding sites I and II, and helices II–IV in S100A11 were replaced with the corresponding regions of S100A10. The chimaeric proteins having substitutions in calcium-binding site II displayed increased hydrophobic surface exposure as assessed by bis-ANS (4,4′-dianilino-1,1′-binaphthyl-5,5′disulfonic acid, dipotassium salt) fluorescence and phenyl-Sepharose binding in the absence of calcium. This response is similar to that observed for Casup2+/sup–S100A11 and calcium-free S100A10. Further, this substitution resulted in calcium-insensitive binding to annexin A2 for one chimaeric protein. The results indicate that residues within site II are important in stabilizing the open conformation of S100A10 and presentation of its target binding site. In contrast, S100A11 chimaeric proteins with helical substitutions displayed poorer hydrophobic surface exposure and, consequently, unobservable annexin A2 binding. The present study represents a first attempt to systematically understand the molecular basis for the calcium-insensitive open conformation of S100A10./p
机译:p100A11是二聚体EF-手钙结合蛋白。钙与S100A11的结合导致大的构象变化,该变化揭示了一个广泛的疏水表面,该表面用于与磷脂结合蛋白(附件A1和A2)相互作用并促进膜囊化事件。与其他S100蛋白相反,由于钙连接残基的缺失和取代,S100A10无法结合钙。尽管如此,不含钙的S100A10仍假定其“开放”构象与处于钙结合状态的S100A11非常相似。为了理解S100A10如何在不存在钙的情况下采用开放构象,构建了七个嵌合蛋白,其中S100A11中钙结合位点I和II以及螺旋II-IV的区域被S100A10的相应区域代替。如通过bis-ANS(4,4'-dianilino-1,1'-binaphthyl-5,5'disulfonic acid,dipotassium salt)荧光和苯基评估的,在钙结合位点II中具有取代基的Chimereric蛋白显示出增加的疏水表面暴露-在无钙的情况下与琼脂糖结合。该响应类似于Ca 2 + –S100A11和无钙S100A10的响应。此外,这种取代导致钙对一种嵌合蛋白的膜联蛋白A2不敏感结合。结果表明,位点II中的残基对于稳定S100A10的开放构象及其靶结合位点的呈递非常重要。相反,具有螺旋取代的S100A11嵌合蛋白表现出较差的疏水性表面暴露,因此,未观察到膜联蛋白A2的结合。本研究是系统地了解S100A10对钙不敏感的开放构象的分子基础的首次尝试。

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