LEA_4 motifs function alone and in conjunction with synergistic cosolutes to protect a labile enzyme during desiccation.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Protein Science Pub Date : 2025-02-01 DOI:10.1002/pro.70028
Vincent Nicholson, Kenny Nguyen, Edith Gollub, Mary McCoy, Feng Yu, Alex S Holehouse, Shahar Sukenik, Thomas C Boothby
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引用次数: 0

Abstract

Organisms from all kingdoms of life depend on Late Embryogenesis Abundant (LEA) proteins to survive desiccation. LEA proteins are divided into broad families distinguished by the presence of family-specific motif sequences. The LEA_4 family, characterized by 11-residue motifs, plays a crucial role in the desiccation tolerance of numerous species. However, the role of these motifs in the function of LEA_4 proteins is unclear, with some studies finding that they recapitulate the function of full-length LEA_4 proteins in vivo, and other studies finding the opposite result. In this study, we characterize the ability of LEA_4 motifs to protect a desiccation-sensitive enzyme, citrate synthase (CS), from loss of function during desiccation. We show here that LEA_4 motifs not only prevent the loss of function of CS during desiccation but also that they can do so more robustly via synergistically interactions with cosolutes. Our analysis further suggests that cosolutes induce synergy with LEA_4 motifs in a manner that correlates with transfer free energy. This research advances our understanding of LEA_4 proteins by demonstrating that during desiccation their motifs can protect specific clients to varying degrees and that their protective capacity is modulated by their chemical environment. Our findings extend beyond the realm of desiccation tolerance, offering insights into the interplay between IDPs and cosolutes. By investigating the function of LEA_4 motifs, we highlight broader strategies for understanding protein stability and function.

LEA_4基序单独发挥作用,并与协同辅质结合,在干燥过程中保护不稳定的酶。
来自所有生命王国的生物体都依赖于晚期胚胎发生丰富蛋白(LEA)来在干燥中生存。LEA蛋白被划分为广泛的家族,通过家族特异性基序序列的存在来区分。LEA_4家族具有11个基序,在许多物种的干燥耐受性中起着至关重要的作用。然而,这些基序在LEA_4蛋白功能中的作用尚不清楚,一些研究发现它们在体内概括了全长LEA_4蛋白的功能,而另一些研究则发现相反的结果。在这项研究中,我们描述了LEA_4基序保护干燥敏感酶柠檬酸合成酶(CS)在干燥过程中功能丧失的能力。我们在这里表明,LEA_4基序不仅可以防止CS在干燥过程中的功能丧失,而且可以通过与co溶质的协同相互作用更有力地阻止CS的功能丧失。我们的分析进一步表明,辅质以一种与转移自由能相关的方式诱导与LEA_4基序的协同。本研究通过证明在干燥过程中它们的基序可以不同程度地保护特定的客户,并且它们的保护能力是由它们的化学环境调节的,从而提高了我们对LEA_4蛋白的理解。我们的研究结果超出了干燥耐受性的范围,为IDPs和co溶质之间的相互作用提供了见解。通过研究LEA_4基序的功能,我们强调了理解蛋白质稳定性和功能的更广泛的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Protein Science
Protein Science 生物-生化与分子生物学
CiteScore
12.40
自引率
1.20%
发文量
246
审稿时长
1 months
期刊介绍: Protein Science, the flagship journal of The Protein Society, is a publication that focuses on advancing fundamental knowledge in the field of protein molecules. The journal welcomes original reports and review articles that contribute to our understanding of protein function, structure, folding, design, and evolution. Additionally, Protein Science encourages papers that explore the applications of protein science in various areas such as therapeutics, protein-based biomaterials, bionanotechnology, synthetic biology, and bioelectronics. The journal accepts manuscript submissions in any suitable format for review, with the requirement of converting the manuscript to journal-style format only upon acceptance for publication. Protein Science is indexed and abstracted in numerous databases, including the Agricultural & Environmental Science Database (ProQuest), Biological Science Database (ProQuest), CAS: Chemical Abstracts Service (ACS), Embase (Elsevier), Health & Medical Collection (ProQuest), Health Research Premium Collection (ProQuest), Materials Science & Engineering Database (ProQuest), MEDLINE/PubMed (NLM), Natural Science Collection (ProQuest), and SciTech Premium Collection (ProQuest).
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