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修饰依赖性限制酶BisI及其同源酶的表达与纯化

Expression and purification of the modification-dependent restriction enzyme BisI and its homologous enzymes.

作者信息

Xu Shuang-Yong, Klein Pernelle, Degtyarev Sergey Kh, Roberts Richard J

机构信息

New England Biolabs, Inc. 240 County Road, Ipswich, MA 01938, USA.

SibEnzyme Ltd., 2/12 Ak, Timakov Street, Novosibirsk 630117, Russia.

出版信息

Sci Rep. 2016 Jun 29;6:28579. doi: 10.1038/srep28579.

Abstract

The methylation-dependent restriction endonuclease (REase) BisI (G(m5)C ↓ NGC) is found in Bacillus subtilis T30. We expressed and purified the BisI endonuclease and 34 BisI homologs identified in bacterial genomes. 23 of these BisI homologs are active based on digestion of (m5)C-modified substrates. Two major specificities were found among these BisI family enzymes: Group I enzymes cut GCNGC containing two to four (m5)C in the two strands, or hemi-methylated sites containing two (m5)C in one strand; Group II enzymes only cut GCNGC sites containing three to four (m5)C, while one enzyme requires all four cytosines to be modified for cleavage. Another homolog, Esp638I cleaves GCS ↓ SGC (relaxed specificity RCN ↓ NGY, containing at least four (m5)C). Two BisI homologs show degenerate specificity cleaving unmodified DNA. Many homologs are small proteins ranging from 150 to 190 amino acid (aa) residues, but some homologs associated with mobile genetic elements are larger and contain an extra C-terminal domain. More than 156 BisI homologs are found in >60 bacterial genera, indicating that these enzymes are widespread in bacteria. They may play an important biological function in restricting pre-modified phage DNA.

摘要

甲基化依赖型限制性内切酶(REase)BisI(G(m5)C ↓ NGC)存在于枯草芽孢杆菌T30中。我们表达并纯化了BisI内切酶以及在细菌基因组中鉴定出的34个BisI同源物。基于对(m5)C修饰底物的消化作用,这些BisI同源物中有23个具有活性。在这些BisI家族酶中发现了两种主要的特异性:第一组酶切割两条链中含有两到四个(m5)C的GCNGC,或一条链中含有两个(m5)C的半甲基化位点;第二组酶仅切割含有三到四个(m5)C的GCNGC位点,而有一种酶需要所有四个胞嘧啶都被修饰才能进行切割。另一个同源物Esp638I切割GCS ↓ SGC(宽松特异性RCN ↓ NGY,含有至少四个(m5)C)。两个BisI同源物表现出切割未修饰DNA的简并特异性。许多同源物是小蛋白,范围从150到190个氨基酸(aa)残基,但一些与可移动遗传元件相关的同源物更大,并且含有一个额外的C末端结构域。在超过60个细菌属中发现了超过156个BisI同源物,这表明这些酶在细菌中广泛存在。它们可能在限制预先修饰的噬菌体DNA方面发挥重要的生物学功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e37/4926085/7737fcfc6b24/srep28579-f1.jpg

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