Structure of RC1339/APRc from Rickettsia conorii, a retropepsin-like aspartic protease.

Mi Li, Alla Gustchina, Rui Cruz, Marisa Simões, Pedro Curto, Juan Martinez, Carlos Faro, Isaura Simões, Alexander Wlodawer
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Abstract

The crystal structures of two constructs of RC1339/APRc from Rickettsia conorii, consisting of either residues 105-231 or 110-231 followed by a His tag, have been determined in three different crystal forms. As predicted, the fold of a monomer of APRc resembles one-half of the mandatory homodimer of retroviral pepsin-like aspartic proteases (retropepsins), but the quaternary structure of the dimer of APRc differs from that of the canonical retropepsins. The observed dimer is most likely an artifact of the expression and/or crystallization conditions since it cannot support the previously reported enzymatic activity of this bacterial aspartic protease. However, the fold of the core of each monomer is very closely related to the fold of retropepsins from a variety of retroviruses and to a single domain of pepsin-like eukaryotic enzymes, and may represent a putative common ancestor of monomeric and dimeric aspartic proteases.

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康氏立克次体的 RC1339/APRc 结构,这是一种类似于胃蛋白酶的天冬氨酸蛋白酶。
我们以三种不同的晶体形式测定了来自康氏立克次体的 RC1339/APRc 的两种构建体的晶体结构,这两种构建体由残基 105-231 或 110-231 组成,其后有一个 His 标记。正如预测的那样,APRc 单体的折叠类似于逆转录病毒胃蛋白酶样天冬氨酸蛋白酶(逆蛋白酶)强制性同源二聚体的二分之一,但 APRc 二聚体的四元结构与典型的逆蛋白酶不同。观察到的二聚体很可能是表达和/或结晶条件的假象,因为它无法支持之前报道的这种细菌天冬氨酸蛋白酶的酶活性。然而,每个单体核心的折叠与来自多种逆转录病毒的逆胃蛋白酶的折叠以及类似胃蛋白酶的真核生物酶的单个结构域密切相关,可能代表了单体和二聚体天冬氨酸蛋白酶的共同祖先。
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Complete epitopes for vaccine design derived from a crystal structure of the broadly neutralizing antibodies PGT128 and 8ANC195 in complex with an HIV-1 Env trimer. Structure of RC1339/APRc from Rickettsia conorii, a retropepsin-like aspartic protease. The novel double-folded structure of d(GCATGCATGC): a possible model for triplet-repeat sequences. Structural basis for amino-acid recognition and transmembrane signalling by tandem Per-Arnt-Sim (tandem PAS) chemoreceptor sensory domains. Structure determination of uracil-DNA N-glycosylase from Deinococcus radiodurans in complex with DNA.
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