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A histidine in the beta-CASP domain of Artemis is critical for its full in vitro and in vivo functions.

机译:Artemis的β-CASP结构域中的组氨酸对其完整的体外和体内功能至关重要。

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摘要

Artemis is a key factor of the nonhomologous end-joining (NHEJ) pathway, which is critical for DNA double-strand break (DSB) repair in eukaryotic cells. It belongs to the beta-CASP family of nucleases, forming a distinct group within the metallo-beta-lactamase superfamily. Proteins of this group are specific for nucleic acids and contain an original domain, the beta-CASP domain, which serves as a cap covering the active site displayed by the metallo-beta-lactamase domain.Here, we have identified in the highly divergent sequences of the beta-CASP domains from DNA-specific nucleases two conserved residues (Artemis E213 and H254), which are not present in RNA-specific enzymes, and shown that H254 plays a key role in the Artemis function, as it is critical for its full activity in vitro. Moreover, inherited mutation of H254 results in radiosensitive severe combined immune deficiency (RS-SCID) in humans. This residue might play a key role in specificity towards DNA, if not directly in zinc binding.
机译:Artemis是非同源末端连接(NHEJ)途径的关键因素,该途径对于真核细胞中DNA双链断裂(DSB)修复至关重要。它属于核酸酶的β-CASP家族,在金属β-内酰胺酶超家族中形成一个独特的基团。该组蛋白对核酸具有特异性,并包含一个原始域,即β-CASP域,该域用作覆盖金属β-内酰胺酶域所显示的活性位点的帽。在这里,我们已经鉴定出高度差异的序列DNA特异性核酸酶的β-CASP结构域的两个保守残基(Artemis E213和H254)在RNA特异性酶中不存在,并显示H254在Artemis功能中起关键作用,因为它对充分发挥体外作用。此外,H254的遗传突变会导致人体出现放射敏感性严重的联合免疫缺陷(RS-SCID)。如果不是直接与锌结合,该残基可能在对DNA的特异性中起关键作用。

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