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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Physiological, pathological, and structural implications of non-enzymatic protein-protein interactions of the multifunctional human transglutaminase 2
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Physiological, pathological, and structural implications of non-enzymatic protein-protein interactions of the multifunctional human transglutaminase 2

机译:多功能人转谷氨酰胺酶2的非酶蛋白相互作用的生理,病理学和结构意义

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Transglutaminase 2 (TG2) is a ubiquitously expressed member of an enzyme family catalyzing Ca2+-dependent transamidation of proteins. It is a multifunctional protein having several well-defined enzymatic (GTP binding and hydrolysis, protein disulfide isomerase, and protein kinase activities) and non-enzymatic (multiple interactions in protein scaffolds) functions. Unlike its enzymatic interactions, the significance of TG2's non-enzymatic regulation of its activities has recently gained importance. In this review, we summarize all the partners that directly interact with TG2 in a non-enzymatic manner and analyze how these interactions could modulate the crosslinking activity and cellular functions of TG2 in different cell compartments. We have found that TG2 mostly acts as a scaffold to bridge various proteins, leading to different functional outcomes. We have also studied how specific structural features, such as intrinsically disordered regions and embedded short linear motifs contribute to multifunctionality of TG2. Conformational diversity of intrinsically disordered regions enables them to interact with multiple partners, which can result in different biological outcomes. Indeed, ID regions in TG2 were identified in functionally relevant locations, indicating that they could facilitate conformational transitions towards the catalytically competent form. We reason that these structural features contribute to modulating the physiological and pathological functions of TG2 and could provide a new direction for detecting unique regulatory partners. Additionally, we have assembled all known anti-TG2 antibodies and have discussed their significance as a toolbox for identifying and confirming novel TG2 regulatory functions.
机译:转谷氨酰胺酶2(TG2)是催化蛋白的Ca2 +依赖性转酰胺基酶的酶家族中普遍存在的成员。它是一种多功能蛋白,具有多种明确的酶促功能(GTP结合和水解,蛋白二硫键异构酶和蛋白激酶活性)和非酶促功能(蛋白支架中的多种相互作用)功能。与它的酶促相互作用不同,TG2对其活性进行非酶促调节的重要性最近变得越来越重要。在这篇综述中,我们总结了以非酶促方式直接与TG2相互作用的所有伙伴,并分析了这些相互作用如何调节TG2在不同细胞区室的交联活性和细胞功能。我们发现TG2主要充当桥接各种蛋白质的支架,从而导致不同的功能结果。我们还研究了特定的结构特征,例如固有的无序区域和嵌入的短线性基序如何促进TG2的多功能性。本质上无序的区域的构象多样性使他们能够与多个伙伴相互作用,这可能导致不同的生物学结果。实际上,TG2中的ID区域在功能上相关的位置被识别,表明它们可以促进构型向催化活性形式的转变。我们认为这些结构特征有助于调节TG2的生理和病理功能,并可能为检测独特的调节伙伴提供新的方向。此外,我们已经组装了所有已知的抗TG2抗体,并讨论了它们作为鉴定和确认新型TG2调节功能的工具箱的意义。

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