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M.BssHII,一种具有异常靶标识别特性的多特异性胞嘧啶-C5-DNA甲基转移酶。

M.BssHII, a multispecific cytosine-C5-DNA-methyltransferase with unusual target recognizing properties.

作者信息

Schumann J, Walter J, Willert J, Wild C, Koch D, Trautner T A

机构信息

Max-Planck-Institut für molekulare Genetik, Berlin, Germany.

出版信息

J Mol Biol. 1996 Apr 19;257(5):949-59. doi: 10.1006/jmbi.1996.0214.

Abstract

A new multispecific cytosine-C5-DNA-methyltransferase (C5-MTase), M.BssHII, was identified in Bacillus stearothermophilus H3. The M.BssHII gene was cloned and sequenced. The amino acid sequence deduced shows the characteristic building plan of a C5-MTase. By sequencing bisulfite-treated DNA methylated by M.BssHII and by restriction enzyme analysis, we defined the following methylation targets of M.BssHII: ACGCGT/CCGCGG (MluI/SacII), PuGCGCPy (HaeII), PuCCGGPy (Cfr10I) and GCGCGC (BssHII). The relative location of the specificity determinants in the C5-MTase was derived from the analysis of M.BssHII derivatives carrying deletions within the variable region "V" and chimeric C5-Mtases constructed between M.BssHII and the related monospecific enzyme M.phi3TII. Four of the M.BssHII specificities (MluI, SacII, Cfr10I and BssHII) could be associated with amino acid segments within the variable region "V". The determinant for HaeII activity had to be assigned to sequences defining the enzyme core, the first example of a C5-MTase in which a sequence-specific methylation potential is mediated by structures outside of the variable region. Another intriguing result came from the analysis of one particular chimera made between M.BssHII and M.phi3TII. This construct showed a relaxation of the methylation capacity, both with respect to the target recognized and the targeting of methylation within this sequence.

摘要

在嗜热脂肪芽孢杆菌H3中鉴定出一种新的多特异性胞嘧啶C5 - DNA甲基转移酶(C5 - MTase),即M.BssHII。克隆并测序了M.BssHII基因。推导的氨基酸序列显示出C5 - MTase的特征性结构模式。通过对经亚硫酸氢盐处理的、被M.BssHII甲基化的DNA进行测序以及限制性酶切分析,我们确定了M.BssHII的以下甲基化靶点:ACGCGT/CCGCGG(MluI/SacII)、PuGCGCPy(HaeII)、PuCCGGPy(Cfr10I)和GCGCGC(BssHII)。C5 - MTase中特异性决定簇的相对位置来自对在可变区“V”内携带缺失的M.BssHII衍生物以及在M.BssHII和相关单特异性酶M.phi3TII之间构建的嵌合C5 - MTase的分析。M.BssHII的四种特异性(MluI、SacII、Cfr10I和BssHII)可与可变区“V”内的氨基酸片段相关联。HaeII活性的决定簇必须归因于定义酶核心的序列,这是C5 - MTase的首个例子,其中序列特异性甲基化潜力由可变区之外的结构介导。另一个有趣的结果来自对在M.BssHII和M.phi3TII之间构建的一个特定嵌合体的分析。该构建体在识别的靶点以及该序列内甲基化的靶向方面均显示出甲基化能力的松弛。

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