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来自结肠弯曲杆菌的限制 DNA 糖基化酶 R.CcoLI 的晶体结构和 DNA 切割机制。

Crystal structure and DNA cleavage mechanism of the restriction DNA glycosylase R.CcoLI from Campylobacter coli.

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi Bunkyo-ku, Tokyo, 113-8657, Japan.

出版信息

Sci Rep. 2021 Jan 13;11(1):859. doi: 10.1038/s41598-020-79537-y.

Abstract

While most restriction enzymes catalyze the hydrolysis of phosphodiester bonds at specific nucleotide sequences in DNA, restriction enzymes of the HALFPIPE superfamily cleave N-glycosidic bonds, similar to DNA glycosylases. Apurinic/apyrimidinic (AP) sites generated by HALFPIPE superfamily proteins are cleaved by their inherent AP lyase activities, other AP endonuclease activities or heat-promoted β-elimination. Although the HALFPIPE superfamily protein R.PabI, obtained from a hyperthermophilic archaea, Pyrococcus abyssi, shows weak AP lyase activity, HALFPIPE superfamily proteins in mesophiles, such as R.CcoLI from Campylobacter coli and R. HpyAXII from Helicobacter pylori, show significant AP lyase activities. To identify the structural basis for the AP lyase activity of R.CcoLI, we determined the structure of R.CcoLI by X-ray crystallography. The structure of R.CcoLI, obtained at 2.35-Å resolution, shows that a conserved lysine residue (Lys71), which is stabilized by a characteristic β-sheet structure of R.CcoLI, protrudes into the active site. The results of mutational assays indicate that Lys71 is important for the AP lyase activity of R.CcoLI. Our results help to elucidate the mechanism by which HALFPIPE superfamily proteins from mesophiles efficiently introduce double-strand breaks to specific sites on double-stranded DNA.

摘要

虽然大多数限制酶在 DNA 中的特定核苷酸序列处催化磷酸二酯键的水解,但 HALFPIPE 超家族的限制酶则类似于 DNA 糖苷酶,切割 N-糖苷键。HALFPIPE 超家族蛋白产生的无嘌呤/无嘧啶 (AP) 位点可通过其内在的 AP 裂合酶活性、其他 AP 内切酶活性或热促进的β消除来切割。虽然来自嗜热古菌 Pyrococcus abyssi 的 HALFPIPE 超家族蛋白 R.PabI 表现出较弱的 AP 裂合酶活性,但中温菌(如 Campylobacter coli 的 R.CcoLI 和 Helicobacter pylori 的 R. HpyAXII)中的 HALFPIPE 超家族蛋白则表现出显著的 AP 裂合酶活性。为了确定 R.CcoLI 的 AP 裂合酶活性的结构基础,我们通过 X 射线晶体学确定了 R.CcoLI 的结构。R.CcoLI 的结构,分辨率为 2.35 Å,显示出一个保守的赖氨酸残基(Lys71),它被 R.CcoLI 的特征β-折叠结构稳定,突出到活性位点中。突变分析的结果表明,Lys71 对于 R.CcoLI 的 AP 裂合酶活性很重要。我们的结果有助于阐明中温菌 HALFPIPE 超家族蛋白如何有效地在双链 DNA 上的特定位点引入双链断裂的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0a6/7806768/14490bb3f7d0/41598_2020_79537_Fig1_HTML.jpg

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