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Structural and Functional Characterization of an RNase HI Domain from the Bifunctional Protein Rv2228c from Mycobacterium tuberculosis▿

机译:结核分枝杆菌双功能蛋白Rv2228c的RNase HI结构域的结构和功能表征▿

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摘要

The open reading frame Rv2228c from Mycobacterium tuberculosis is predicted to encode a protein composed of two domains, each with individual functions, annotated through sequence similarity searches. The N-terminal domain is homologous with prokaryotic and eukaryotic RNase H domains and the C-terminal domain with α-ribazole phosphatase (CobC). The N-terminal domain of Rv2228c (Rv2228c/N) and the full-length protein were expressed as fusions with maltose binding protein (MBP). Rv2228c/N was shown to have RNase H activity with a hybrid RNA/DNA substrate as well as double-stranded RNase activity. The full-length protein was shown to have additional CobC activity. The crystal structure of the MBP-Rv2228c/N fusion protein was solved by molecular replacement and refined at 2.25-Å resolution (R = 0.182; Rfree = 0.238). The protein is monomeric in solution but associates in the crystal to form a dimer. The Rv2228c/N domain has the classic RNase H fold and catalytic machinery but lacks several surface features that play important roles in the cleavage of RNA/DNA hybrids by other RNases H. The absence of either the basic protrusion of some RNases H or the hybrid binding domain of others appears to be compensated by the C-terminal CobC domain in full-length Rv2228c. The double-stranded-RNase activity of Rv2228c/N contrasts with classical RNases H and is attributed to the absence in Rv2228c/N of a key phosphate binding pocket.
机译:预测来自结核分枝杆菌的开放阅读框Rv2228c编码由两个结构域组成的蛋白质,每个结构域具有各自的功能,并通过序列相似性搜索进行注释。 N端结构域与原核和真核RNase H结构域同源,C端结构域与α-核唑磷酸酶(CobC)同源。 Rv2228c的N末端结构域(Rv2228c / N)和全长蛋白表达为与麦芽糖结合蛋白(MBP)的融合体。 Rv2228c / N具有杂化RNA / DNA底物的RNase H活性以及双链RNase活性。全长蛋白显示具有额外的CobC活性。 MBP-Rv2228c / N融合蛋白的晶体结构通过分子置换解决,并以2.25Å的分辨率进行精制(R = 0.182; Rfree = 0.238)。该蛋白质在溶液中为单体,但在晶体中缔合形成二聚体。 Rv2228c / N结构域具有经典的RNase H折叠和催化机制,但缺乏几个表面特征,这些表面特征在其他RNase H切割RNA / DNA杂种中起重要作用。缺少某些RNase H的基本突起或杂种其他的结合域似乎被全长Rv2228c中的C末端CobC域所补偿。 Rv2228c / N的双链RNase活性与经典RNases H相反,并且归因于Rv2228c / N中不存在关键的磷酸结合袋。

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