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单聚乙二醇化α-1 抗胰蛋白酶的 PEG 长度和 PEG 化位点对其结构、热力学、热和蛋白水解稳定性的影响。

Impact of the PEG length and PEGylation site on the structural, thermodynamic, thermal, and proteolytic stability of mono-PEGylated alpha-1 antitrypsin.

机构信息

Advanced Drug Delivery and Biomaterials, Louvain Drug Research Institute, Université catholique de Louvain (UCLouvain), Brussels, Belgium.

Department of Life Sciences, InBios, Center for Protein Engineering, Nanobodies to Explore Protein Structure and Functions, University of Liège, Liège, Belgium.

出版信息

Protein Sci. 2022 Sep;31(9):e4392. doi: 10.1002/pro.4392.

Abstract

Conjugation to polyethylene glycol (PEG) is a widely used approach to improve the therapeutic value of proteins essentially by prolonging their body residence time. PEGylation may however induce changes in the structure and/or the stability of proteins and thus on their function(s). The effects of PEGylation on the thermodynamic stability can either be positive (stabilization), negative (destabilization), or neutral (no effect). Moreover, various factors such as the PEG length and PEGylation site can influence the consequences of PEGylation on the structure and stability of proteins. In this study, the effects of PEGylation on the structure, stability, and polymerization of alpha1-antitrypsin (AAT) were investigated, using PEGs with different lengths, different structures (linear or 2-armed) and different linking chemistries (via amine or thiol) at two distinct positions of the sequence. The results show that whatever the size, position, and structure of PEG chains, PEGylation (a) does not induce significant changes in AAT structure (either at the secondary or tertiary level); (b) does not alter the stability of the native protein upon both chemical- and heat-induced denaturation; and (c) does not prevent AAT to fully refold and recover its activity following chemical denaturation. However, the propensity of AAT to aggregate upon heat treatment was significantly decreased by PEGylation, although PEGylation did not prevent the irreversible inactivation of the enzyme. Moreover, conjugation to PEG, especially 2-armed 40 kDa PEG, greatly improved the proteolytic resistance of AAT. PEGylation of AAT could be a promising strategy to prolong its half-life after infusion in AAT-deficient patients and thereby decrease the frequency of infusions.

摘要

聚乙二醇(PEG)缀合是一种广泛应用的方法,通过延长蛋白质的体内半衰期来提高其治疗价值。然而,PEG 化可能会导致蛋白质的结构和/或稳定性发生变化,从而影响其功能。PEG 化对热力学稳定性的影响可以是正向的(稳定化)、负向的(失稳化)或中性的(无影响)。此外,PEG 长度和 PEG 化位点等各种因素会影响 PEG 化对蛋白质结构和稳定性的影响。在这项研究中,使用不同长度、不同结构(线性或 2 臂)和不同连接化学(通过胺或巯基)的 PEG,在 AAT 序列的两个不同位置,研究了 PEG 化对 AAT 的结构、稳定性和聚合的影响。结果表明,无论 PEG 链的大小、位置和结构如何,PEG 化(a)不会导致 AAT 结构发生显著变化(无论是二级还是三级结构);(b)不会改变化学和热变性后天然蛋白质的稳定性;(c)不会阻止 AAT 在化学变性后完全折叠并恢复其活性。然而,PEG 化显著降低了 AAT 在热处理时聚集的倾向,尽管 PEG 化并不能防止酶的不可逆失活。此外,PEG 化,特别是 2 臂 40 kDa PEG 化,大大提高了 AAT 的抗蛋白水解能力。AAT 的 PEG 化可能是一种有前途的策略,可以延长 AAT 缺乏症患者输注后 AAT 的半衰期,从而减少输注频率。

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