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The type II restriction endonuclease MvaI has dual specificity.

机译:II型限制性核酸内切酶MvaI具有双重特异性。

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The MvaI restriction endonuclease cuts 5'-CC[down arrow]AGG-3'/5'-CC[up arrow]TGG-3' sites as indicated by the arrows. N4-methylation of the inner cytosines (C(m4)CAGG/C(m4)CTGG) protects the site against MvaI cleavage. Here, we show that MvaI nicks the G-strand of the related sequence (CCGGG/CCCGG, BcnI site) if the inner cytosines are C5-methylated: C(m5)C[down arrow]GGG/CC(m5)CGG. At M.SssI-methylated SmaI sites, where two oppositely oriented methylated BcnI sites partially overlap, double-nicking leads to double-strand cleavage (CC(m5)C[down arrow]GGG/CC(m5)C[up arrow]GGG) generating fragments with blunt ends. The double-strand cleavage rate and the stringency of substrate site recognition is lower at the methylation-dependent site than at the canonical target site. MvaI is the first restriction endonuclease shown to possess, besides the 'normal' activity on its unmethylated recognition site, also a methylation-directed activity on a different sequence.
机译:MvaI限制性核酸内切酶切割5'-CC [AGG-3'/ 5'-CCGTG-3'位点,如箭头所示。内部胞嘧啶的N4-甲基化(C(m4)CAGG / C(m4)CTGG)保护该位点免受MvaI裂解。在此,我们显示,如果内部胞嘧啶被C5甲基化,则MvaI会切掉相关序列(CCGGG / CCCGG,BcnI位点)的G链:C(m5)C [下箭头] GGG / CC(m5)CGG。在两个相反方向的甲基化BcnI位点部分重叠的M.SssI-甲基化SmaI位点,双切口导致双链裂解(CC(m5)C [下箭头] GGG / CC(m5)C [上箭头] GGG )产生末端钝的碎片。甲基化依赖性位点的双链裂解率和底物位点识别的严格性低于标准靶位点。 MvaI是第一个限制性核酸内切酶,除了在其未甲基化的识别位点具有“正常”活性外,还在不同序列上具有甲基化导向的活性。

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