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首页> 外文期刊>Angewandte Chemie >Structure and Mechanism of an Aspartimide-Dependent Peptide Ligase in Human Legumain
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Structure and Mechanism of an Aspartimide-Dependent Peptide Ligase in Human Legumain

机译:人Legumain中天冬酰胺依赖性肽连接酶的结构和机制

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摘要

Peptide ligases expand the repertoire of genetically encoded protein architectures by synthesizing new peptide bonds, energetically driven by ATP or NTPs. Here, we report the discovery of a genuine ligase activity in human legumain (AEP) which has important roles in immunity and tumor progression that were believed to be due to its established cysteine protease activity. Defying dogma, the ligase reaction is independent of the catalytic cysteine but exploits an endogenous energy reservoir that results from the conversion of a conserved aspartate to a metastable aspartimide. Legumain's dual protease-ligase activities are pH- and thus localization controlled, dominating at acidic and neutral pH, respectively. Their relevance includes reversible on-off switching of cystatin inhibitors and enzyme (in)activation, and may affect the generation of three-dimensional MHC epitopes. The aspartate-aspartimide (succinimide) pair represents a new paradigm of coupling endergonic reactions in ATP-scarce environments.
机译:肽连接酶通过合成由ATP或NTP驱动的新肽键,扩展了遗传编码的蛋白质结构的范围。在这里,我们报道了在人类Legumain(AEP)中发现真正的连接酶活性的事实,该酶在免疫力和肿瘤进展中具有重要作用,据信这是由于其已建立的半胱氨酸蛋白酶活性。对抗教条,连接酶反应不依赖于催化半胱氨酸,但利用了内源性能量储存器,该能量储存器是由保守的天冬氨酸转化为亚稳的天冬酰胺所产生的。 Legumain的双重蛋白酶-连接酶活性是pH值,因此受本地化控制,分别在酸性和中性pH值上占优势。它们的相关性包括胱抑素抑制剂的可逆开关控制和酶(失活)激活,并且可能影响三维MHC表位的生成。天冬氨酸-天冬酰胺(琥珀酰亚胺)对代表了在ATP稀缺环境中耦合皮克反应的新范式。

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