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The 70S ribosome modulates the ATPase activity of Escherichia coli YchF

机译:70S核糖体调节大肠杆菌YchF的ATPase活性

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YchF is one of two universally conserved GTPases with unknown cellular function. As a first step toward elucidating YchF's cellular role, we performed a detailed biochemical characterization of the protein from Escherichia coli. Our data from fluorescence titrations not only confirmed the surprising finding that YchF E.coli binds adenine nucleotides more efficiently than guanine nucleotides, but also provides the first evidence suggesting that YchF assumes two distinct conformational states (ATP- and ADP-bound) consistent with the functional cycle of a typical GTPase. Based on an in vivo pull-down experiment using a His-tagged variant of YchF from E. coli (YchF E.coli), we were able to isolate a megadalton complex containing the 70S ribosome. Based on this finding, we report the successful reconstitution of a YchF?70S complex in vitro, revealing an affinity (KD) of the YchF E.coli?ADPNP complex for 70S ribosomes of 3 μM. The in vitro reconstitution data also suggests that the identity of the nucleotide-bound state of YchF (ADP or ATP) modulates its affinity for 70S ribosomes. A detailed Michaelis-Menten analysis of YchF's catalytic activity in the presence and the absence of the 70S ribosome and its subunits revealed for the first time that the 70S ribosome is able to stimulate YchF's ATPase activity (~10-fold), confirming the ribosome as part of the functional cycle of YchF. Our findings taken together with previously reported data for the human homolog of YchF (hOLA1) indicate a high level of evolutionary conservation in the enzymatic properties of YchF and suggest that the ribosome is the main functional partner of YchF not only in bacteria.
机译:YchF是细胞功能未知的两个普遍保守的GTPases之一。作为阐明YchF在细胞中的作用的第一步,我们对大肠杆菌中的蛋白质进行了详细的生化表征。我们从荧光滴定得到的数据不仅证实了令人惊讶的发现,即YchF E.coli比鸟嘌呤核苷酸更有效地结合腺嘌呤核苷酸,而且还提供了第一个证据,表明YchF假定了两个与ACh一致的构象状态(ATP和ADP结合)。典型GTPase的功能周期。基于使用大肠杆菌的YchF的His标记变体(YchF E.coli)进行的体内下拉实验,我们能够分离出含有70S核糖体的兆达尔顿复合物。基于此发现,我们报道了YchF?70S复合物在体外的成功重组,揭示了YchF E.coli?ADPNP复合物与3μM的70S核糖体的亲和力(KD)。体外重建数据还表明,YchF的核苷酸结合状态(ADP或ATP)的身份调节了其对70S核糖体的亲和力。在存在和不存在70S核糖体及其亚基的情况下,对YchF催化活性的详细Michaelis-Menten分析首次揭示了70S核糖体能够刺激YchF的ATPase活性(约10倍),证实了核糖体为YchF功能周期的一部分。我们的发现与以前报道的YchF人类同源物(hOLA1)数据一起表明,YchF的酶学性质具有高度的进化保守性,并表明核糖体不仅是细菌,而且是YchF的主要功能伙伴。

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