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一种用于乳酸乳球菌中II组内含子剪接遗传分析的基于接合的系统。

A conjugation-based system for genetic analysis of group II intron splicing in Lactococcus lactis.

作者信息

Klein Joanna R, Chen Yuqing, Manias Dawn A, Zhuo Jin, Zhou Liang, Peebles Craig L, Dunny Gary M

机构信息

Department of Microbiology, University of Minnesota Medical School, Minneapolis, Minnesota 55455, USA.

出版信息

J Bacteriol. 2004 Apr;186(7):1991-8. doi: 10.1128/JB.186.7.1991-1998.2004.

Abstract

The conjugative element pRS01 from Lactococcus lactis encodes the putative relaxase protein LtrB. The ltrB gene is interrupted by the functional group II intron Ll.ltrB. Accurate splicing of the two ltrB exons is required for synthesis of the mRNA encoding the LtrB conjugative relaxase and subsequent plasmid transfer. A conjugation-based genetic assay was developed to identify Ll.ltrB mutations that affect splicing. In this assay a nonsplicing, transfer-defective pRS01 derivative (pM1014) and a shuttle vector carrying the ltrB region, including the Ll.ltrB intron (pCOM9), are used. pCOM9 provides splicing-dependent complementation of the transfer defect of pM1014. Site-directed mutations within Ll.ltrB, either in the catalytic RNA or in the intron-encoded protein gene ltrA, were generated in the context of pCOM9. When these mutants were tested in the conjugation-based assay, significantly reduced mating was observed. Quantitative molecular analysis of in vivo splicing activity confirmed that the observed mating defects resulted from reduced splicing. Once the system was validated for the engineered mutants, random mutagenesis of the intron followed by genetic and molecular screening for splicing defects resulted in identification of point mutations that affect splicing.

摘要

来自乳酸乳球菌的接合元件pRS01编码假定的松弛酶蛋白LtrB。ltrB基因被功能性II组内含子Ll.ltrB中断。两个ltrB外显子的准确剪接是合成编码LtrB接合松弛酶的mRNA以及随后进行质粒转移所必需的。开发了一种基于接合的遗传检测方法来鉴定影响剪接的Ll.ltrB突变。在该检测中,使用了一种非剪接、转移缺陷型的pRS01衍生物(pM1014)和一个携带ltrB区域(包括Ll.ltrB内含子)的穿梭载体(pCOM9)。pCOM9提供了对pM1014转移缺陷的剪接依赖性互补。在pCOM9的背景下,在Ll.ltrB内的催化RNA或内含子编码蛋白基因ltrA中产生了定点突变。当在基于接合的检测中测试这些突变体时,观察到交配显著减少。对体内剪接活性的定量分子分析证实,观察到的交配缺陷是由剪接减少导致的。一旦该系统针对工程突变体得到验证,对内含子进行随机诱变,随后对剪接缺陷进行遗传和分子筛选,从而鉴定出影响剪接的点突变。

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