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在缺乏错配修复蛋白MSH2的小鼠免疫球蛋白可变基因中,G和C核苷酸处的超突变增加。

Increased hypermutation at G and C nucleotides in immunoglobulin variable genes from mice deficient in the MSH2 mismatch repair protein.

作者信息

Phung Q H, Winter D B, Cranston A, Tarone R E, Bohr V A, Fishel R, Gearhart P J

机构信息

Laboratory of Molecular Genetics, National Institute on Aging, National Institutes of Health, Baltimore, Maryland 21224, USA.

出版信息

J Exp Med. 1998 Jun 1;187(11):1745-51. doi: 10.1084/jem.187.11.1745.

Abstract

Rearranged immunoglobulin variable genes are extensively mutated after stimulation of B lymphocytes by antigen. Mutations are likely generated by an error-prone DNA polymerase, and the mismatch repair pathway may process the mispairs. To examine the role of the MSH2 mismatch repair protein in hypermutation, Msh2-/- mice were immunized with oxazolone, and B cells were analyzed for mutation in their VkappaOx1 light chain genes. The frequency of mutation in the repair-deficient mice was similar to that in Msh2+/+ mice, showing that MSH2-dependent mismatch repair does not cause hypermutation. However, there was a striking bias for mutations to occur at germline G and C nucleotides. The results suggest that the hypermutation pathway frequently mutates G.C pairs, and a MSH2-dependent pathway preferentially corrects mismatches at G and C.

摘要

抗原刺激B淋巴细胞后,重排的免疫球蛋白可变基因会发生广泛突变。这些突变可能由易出错的DNA聚合酶产生,错配修复途径可能会处理错配。为了研究MSH2错配修复蛋白在高突变中的作用,用恶唑酮免疫Msh2 - / - 小鼠,并分析B细胞VkappaOx1轻链基因中的突变。修复缺陷小鼠的突变频率与Msh2 + / + 小鼠相似,表明MSH2依赖的错配修复不会导致高突变。然而,在种系G和C核苷酸处发生突变存在明显的偏向性。结果表明,高突变途径经常使G.C碱基对发生突变,而MSH2依赖的途径优先纠正G和C处的错配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b11/2212314/4aa7a64edf16/JEM980368.f1.jpg

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