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Investigating the Effect of Chain Connectivity on the Folding of a Beta-Sheet Protein On and Off the Ribosome

机译:调查链连通性对核糖体折叠β-片蛋白折叠的影响

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Determining the relationship between protein folding pathways on and off the ribosome remains an important area of investigation in biology. Studies on isolated domains have shown that alteration of the separation of residues in a polypeptide chain, while maintaining their spatial contacts, may affect protein stability and folding pathway. Due to the vectorial emergence of the polypeptide chain from the ribosome, chain connectivity may have an important influence upon cotranslational folding. Using MATH, an all beta-sandwich domain, we investigate whether the connectivity of residues and secondary structure elements is a key determinant of when cotranslational folding can occur on the ribosome. From Phi-value analysis, we show that the most structured region of the transition state for folding in MATH includes the N and C terminal strands, which are located adjacent to each other in the structure. However, arrest peptide force-profile assays show that wild-type MATH is able to fold cotranslationally, while some C-terminal residues remain sequestered in the ribosome, even when destabilized by 2-3 kcal mol(-1). We show that, while this pattern of (Phi-values is retained in two circular permutants in our studies of the isolated domains, one of these permutants can fold only when fully emerged from the ribosome. We propose that in the case of MATH, onset of cotranslational folding is determined by the ability to form a sufficiently stable folding nucleus involving both beta-sheets, rather than by the location of the terminal strands in the ribosome tunnel. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:确定核糖体蛋白质折叠途径之间的关系仍然是生物学中的重要调查领域。孤立结构域的研究表明,在多肽链中分离残留物的改变,同时保持其空间触点,可能影响蛋白质稳定性和折叠途径。由于来自核糖体的多肽链的六血,链连通可能对分致折叠的影响可能具有重要影响。使用MATH,全β-三明治域,我们研究了残留物和二级结构元素的连接是否是核糖体在核糖体上发生分致折叠的关键决定因素。从PHI值分析,我们表明,用于折叠数学的过渡状态的最大结构区域包括N和C终端股,其在结构中彼此相邻地定位。然而,捕获肽力型分析结果表明,野生型数学能够折叠分类,而一些C末端残基在核糖体中仍然在核糖体中隔离,即使在2-3 kcal摩尔(-1)的稳定下也是如此。我们表明,虽然这种模式(PHI值在我们对孤立的结构域的研究中保留了两个循环偏转物中,但这些依赖体中的一种只能在从核糖体中充分出现时折叠。我们提出在数学的情况下,发病通过形成涉及β-片的足够稳定的折叠核的能力决定,而不是通过核糖体隧道中的末端股线的位置来确定。(c)2018年作者。由elestvier有限公司出版

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