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Crystal structures of adenylylated and unadenylylated P_II protein GlnK from Corynebacterium glutamicum

机译:adenylylated和晶体结构unadenylylated P_II GlnK蛋白质棒状杆菌属glutamicum

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P_II proteins are ubiquitous signaling proteins that are involved in the regulation of the nitrogen/carbon balance in bacteria, archaea, and some plants and algae. Signal transduction via P_II proteins is modulated by effector molecules and post-translational modifications in the P_II T-loop. Whereas the binding of ADP, ATP and the concomitant binding of ATP and 2-oxoglutarate (2OG) engender two distinct conformations of the T-loop that either favor or disfavor the interaction with partner proteins, the structural consequences of post-translational modifications such as phosphorylation, uridylylation and adenylylation are far less well understood. In the present study, crystal structures of the P_II protein GlnK from Corynebacterium glutamicum have been determined, namely of adenylylated GlnK (adGlnK) and unmodified unadenylylated GlnK (unGlnK). AdGlnK has been proposed to act as an inducer of the transcription repressor AmtR, and the adenylylation of Tyr51 in GlnK has been proposed to be a prerequisite for this function. The structures of unGlnK and adGlnK allow the first atomic insights into the structural implications of the covalent attachment of an AMP moiety to the T-loop. The overall GlnK fold remains unaltered upon adenylylation, and T-loop adenylylation does not appear to interfere with the formation of the two major functionally important T-loop conformations, namely the extended T-loop in the canonical ADP-bound state and the compacted T-loop that is adopted upon the simultaneous binding of Mg-ATP and 2OG Thus, the P_II-typical conformational switching mechanism appears to be preserved in GlnK from C. glutamicum, while at the same time the functional repertoire becomes expanded through the accommodation of a peculiar post-translational modification.
机译:P_II蛋白质是无处不在的信号蛋白所涉及的监管氮/碳平衡在细菌、古生菌和有些植物和藻类。P_II蛋白质用以调制效应分子P_II和转录后修饰T-loop。相伴的ATP和2-oxoglutarate绑定(2 og)产生两个不同的构象T-loop赞成或不赞成的互动与伴侣蛋白质结构转录后修饰的后果如磷酸化、uridylylation和腺苷酰化作用不太清楚。目前的研究中,P_II的晶体结构从棒状杆菌蛋白质GlnK glutamicum的确定,即adenylylated GlnK(adGlnK)和修改的unadenylylated GlnK(unGlnK)。诱导的转录阻遏AmtR,在GlnK Tyr51的腺苷酰化作用提出了这个函数是一个先决条件。unGlnK和adGlnK允许的结构第一个原子洞察结构AMP的共价连接T-loop一半。依然没有改变在腺苷酰化作用,T-loop腺苷酰化作用似乎并不干涉形成的两个主要功能重要的T-loop构象,即扩展T-loop规范化ADP-bound状态和压实T-loop采用的同时结合Mg-ATP和2 og因此,P_II-typical构象转换机制似乎是保存在GlnK从C。glutamicum,同时功能曲目成为了特殊的翻译后的住宿修改。

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