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胞苷脱氨酶AID和APOBEC-1在一种新型酵母选择系统中表现出不同的功能特性。

The cytidine deaminases AID and APOBEC-1 exhibit distinct functional properties in a novel yeast selectable system.

作者信息

Krause Kristina, Marcu Kenneth B, Greeve Jobst

机构信息

Department of Clinical Research, University of Berne, Berne, Switzerland.

出版信息

Mol Immunol. 2006 Feb;43(4):295-307. doi: 10.1016/j.molimm.2005.05.004. Epub 2005 Jun 15.

Abstract

Activation-induced cytidine deaminase (AID) is indispensable for immunoglobulin maturation by somatic hypermutations and class switch recombination and is supposed to deaminate cytidines in DNA, while its homolog APOBEC-1 edits apolipoprotein (apo) B mRNA by cytidine deamination. We studied the editing activity of APOBEC-1 and AID in yeast using the selectable marker Gal4 linked to its specific inhibitor protein Gal80 via an apo B cassette (Gal4-C) or via the variable region of a mouse immunoglobulin heavy chain gene (Gal4-VH). Expression of APOBEC-1 induced C to U editing in up to 15% of the Gal4-C transcripts, while AID was inactive in this reaction even in the presence of the APOBEC-1 complementation factor. After expression of APOBEC-1 as well as AID approximately 10(-3) of yeast cells survived low stringency selection and expressed beta-galactosidase. Neither AID nor APOBEC-1 mutated the VH sequence of Gal4-VH, and consequently the yeast colonies did not escape high stringent selection. AID, however, induced frequent plasmid recombinations that were only rarely observed with APOBEC-1. In conclusion, AID cannot substitute APOBEC-1 to edit the apo B mRNA, and the expression of AID in yeast is not sufficient for the generation of point mutations in a highly transcribed Gal4-VH sequence. Cofactors for AID induced somatic hypermutations of immunoglobulin variable regions, that are present in B cells and a variety of non-B cells, appear to be missing in yeast. In contrast to APOBEC-1, AID alone does not exhibit an intrinsic specificity for its target sequences.

摘要

激活诱导的胞嘧啶脱氨酶(AID)对于通过体细胞超突变和类别转换重组实现免疫球蛋白成熟是必不可少的,并且被认为可使DNA中的胞嘧啶脱氨,而其同源物载脂蛋白B mRNA编辑酶1(APOBEC-1)则通过胞嘧啶脱氨来编辑载脂蛋白(apo)B mRNA。我们利用通过载脂蛋白B盒式结构(Gal4-C)或小鼠免疫球蛋白重链基因可变区(Gal4-VH)与特定抑制蛋白Gal80相连的选择标记Gal4,在酵母中研究了APOBEC-1和AID的编辑活性。APOBEC-1的表达在高达15%的Gal4-C转录本中诱导了C到U的编辑,而即使在存在APOBEC-1互补因子的情况下,AID在此反应中也无活性。在APOBEC-1以及AID表达后,约10⁻³的酵母细胞在低严格度选择下存活并表达β-半乳糖苷酶。AID和APOBEC-1均未使Gal4-VH的VH序列发生突变,因此酵母菌落未逃脱高严格度选择。然而,AID诱导了频繁的质粒重组,而APOBEC-1仅很少观察到这种情况。总之,AID不能替代APOBEC-1来编辑载脂蛋白B mRNA,并且AID在酵母中的表达不足以在高度转录的Gal4-VH序列中产生点突变。在B细胞和多种非B细胞中存在的、诱导免疫球蛋白可变区体细胞超突变的AID辅助因子,在酵母中似乎缺失。与APOBEC-1不同,单独的AID对其靶序列不表现出内在特异性。

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