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Cloning and analysis of the four genes coding for Bpu10I restriction-modification enzymes.

机译:编码Bpu10I限制性修饰酶的四个基因的克隆和分析。

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The Bpu 10I R-M system from Bacillus pumilus 10, which recognizes the asymmetric 5'-CCTNAGC sequence, has been cloned, sequenced and expressed in Escherichia coli . The system comprises four adjacent, similarly oriented genes encoding two m5C MTases and two subunits of Bpu 10I ENase (34.5 and 34 kDa). Both bpu10IR genes either in cis or trans are needed for the manifestation of R. Bpu 10I activity. Subunits of R. Bpu 10I, purified to apparent homogeneity, are both required for cleavage activity. This heterosubunit structure distinguishes the Bpu 10I restriction endonuclease from all other type II restriction enzymes described previously. The subunits reveal 25% amino acid identity. Significant similarity was also identified between a 43 amino acid region of R. Dde I and one of the regions of higher identity shared between the Bpu 10I subunits, a region that could possibly include the catalytic/Mg2+binding center. The similarity between Bpu 10I and Dde I MTases is not limited to the conserved motifs (CM) typical for m5C MTases. It extends into the variable region that lies between CMs VIII and IX. Duplication of a progenitor gene, encoding an enzyme recognizing a symmetric nucleotide sequence, followed by concerted divergent evolution, may provide a possible scenario leading to the emergence of the Bpu 10I ENase, which recognizes an overall asymmetric sequence and cleaves within it symmetrically.
机译:来自短小芽孢杆菌10的Bpu 10I R-M系统识别了不对称的5'-CCTNAGC序列,已经在大肠杆菌中克隆,测序并表达。该系统包括四个相邻的,取向相似的基因,它们编码两个m5C MTase和两个Bpu 10I ENase亚基(34.5和34 kDa)。 R. Bpu 10I活性的表现需要顺式或反式两个bpu10IR基因。纯化至表观同质的R.Bpu 10I的亚基均是裂解活性所必需的。这种异亚基结构将Bpu 10I限制性核酸内切酶与之前描述的所有其他II型限制性酶区分开。亚基揭示了25%的氨基酸同一性。在R. Dde I的43个氨基酸区域与Bpu 10I亚基之间共享的同一性较高的区域之一之间也发现了显着相似性,该区域可能包括催化/ Mg2 +结合中心。 Bpu 10I和Dde I MTase之间的相似性不限于m5C MTase的典型保守基序(CM)。它延伸到位于CM VIII和IX之间的可变区域。编码识别对称核苷酸序列的酶的祖先基因的复制,然后协同发散进化,可能提供导致Bpu 10I ENase出现的可能情况,该酶识别整个不对称序列并在其中对称切割。

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