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Structural basis for the NAD-hydrolysis mechanism and the ARTT-loop plasticity of C3 exoenzymes

机译:NAD水解机理和C3外切酶的ARTT环可塑性的结构基础

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摘要

C3-like exoenzymes are ADP-ribosyltransferases that specifically modify some Rho GTPase proteins, leading to their sequestration in the cytoplasm, and thus inhibiting their regulatory activity on the actin cytoskeleton. This modification process goes through three sequential steps involving NAD-hydrolysis, Rho recognition, and binding, leading to Rho ADP-ribosylation. Independently, three distinct residues within the ARTT loop of the C3 exoenzymes are critical for each of these steps. Supporting the critical role of the ARTT loop, we have shown previously that it adopts a distinct conformation upon NAD binding. Here, we present seven wild-type and ARTT loop-mutant structures of C3 exoenzyme of Clostridium botulinum free and bound to its true substrate, NAD, and to its NAD-hydrolysis product, nicotinamide. Altogether, these structures expand our understanding of the conformational diversity of the C3 exoenzyme, mainly within the ARTT loop.
机译:C3样外切酶是ADP-核糖基转移酶,可特异性修饰某些Rho GTPase蛋白,从而使其螯合在细胞质中,从而抑制其对肌动蛋白细胞骨架的调节活性。该修饰过程经历了三个连续步骤,涉及NAD水解,Rho识别和结合,从而导致Rho ADP-核糖基化。独立地,C3外切酶的ARTT环内的三个不同残基对于这些步骤中的每一个都是至关重要的。为了支持ARTT循环的关键作用,我们之前已经证明了它在NAD结合时采用了独特的构象。在这里,我们介绍了肉毒梭菌C3外切酶的7个野生型和ARTT环突变结构,它们游离并结合到其真实底物NAD和其NAD水解产物烟酰胺上。总而言之,这些结构扩展了我们对C3外切酶构象多样性的理解,主要是在ARTT环内。

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