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保护信号末端或形成非标准V(D)J重组产物并不需要Ku86。

Ku86 is not required for protection of signal ends or for formation of nonstandard V(D)J recombination products.

作者信息

Han J O, Steen S B, Roth D B

机构信息

Department of Microbiology and Immunology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Mol Cell Biol. 1997 Apr;17(4):2226-34. doi: 10.1128/MCB.17.4.2226.

Abstract

Ku, a heterodimer of 70- and 86-kDa subunits, serves as the DNA binding component of the DNA-dependent protein kinase (DNA-PK). Cells deficient for the 86-kDa subunit of Ku (Ku86-deficient cells) lack Ku DNA end-binding activity and are severely defective for formation of the standard V(D)J recombination products, i.e., signal and coding joints. It has been widely hypothesized that Ku is required for protection of broken DNA ends generated during V(D)J recombination. Here we report the first analysis of V(D)J recombination intermediates in a Ku-deficient cell line. We find that full-length, ligatable signal ends are abundant in these cells. These data show that Ku86 is not required for the protection or stabilization of signal ends, suggesting that other proteins may perform this function. The presence of high levels of signal ends in Ku-deficient cells prompted us to investigate whether these ends could participate in joining reactions. We show that nonstandard V(D)J recombination products (hybrid joints), which involve joining a signal end to a coding end, form with similar efficiencies in Ku-deficient and wild-type fibroblasts. These data support the surprising conclusion that Ku is not required for some types of V(D)J joining events. We propose a novel RAG-mediated joining mechanism, analogous to disintegration reactions performed by retroviral integrases, to explain how formation of hybrid joints can bypass the requirement for Ku and DNA-PK.

摘要

Ku是由70 kDa和86 kDa亚基组成的异二聚体,作为DNA依赖性蛋白激酶(DNA-PK)的DNA结合成分。缺乏Ku 86 kDa亚基的细胞(Ku86缺陷细胞)缺乏Ku DNA末端结合活性,并且在标准V(D)J重组产物(即信号接头和编码接头)的形成方面存在严重缺陷。人们普遍推测,Ku对于保护V(D)J重组过程中产生的断裂DNA末端是必需的。在此,我们首次对Ku缺陷细胞系中的V(D)J重组中间体进行了分析。我们发现,在这些细胞中全长、可连接的信号末端大量存在。这些数据表明,Ku86对于信号末端的保护或稳定并非必需,这表明其他蛋白质可能执行此功能。Ku缺陷细胞中高水平信号末端的存在促使我们研究这些末端是否能够参与连接反应。我们发现,非标准V(D)J重组产物(杂合接头),即涉及将信号末端与编码末端连接的产物,在Ku缺陷和成纤维细胞中形成的效率相似。这些数据支持了一个惊人的结论,即某些类型的V(D)J连接事件不需要Ku。我们提出了一种新的RAG介导的连接机制,类似于逆转录病毒整合酶进行的解体反应,以解释杂合接头的形成如何能够绕过对Ku和DNA-PK的需求。

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