Kulesza P, Lieber M R
Department of Pathology, Norris Comprehensive Cancer Center, Room 5425, University of Southern California School of Medicine, 1441 Eastlake Avenue, Los Angeles, CA 9003, USA.
Nucleic Acids Res. 1998 Sep 1;26(17):3944-8. doi: 10.1093/nar/26.17.3944.
The analysis of the role of DNA-dependent protein kinase (DNA-PK) in DNA double-strand break repair and V(D)J recombination is based primarily on studies of murine scid, in which only the C-terminal 2% of the protein is deleted and the remaining 98% is expressed at levels that are within an order of magnitude of normal. In murine scid, signal joint formation is observed at normal levels, even though coding joint formation is reduced over three orders of magnitude. In contrast, a closely associated protein, Ku, is necessary for both coding and signal joint formation. Based on these observations, a reasonable hypothesis has been that absence of the DNA-PK protein (rather than merely its C-terminal 2% truncation) would ablate signal joint formation along with coding joint formation. In fact, a study of equine SCID, in which there is a much larger truncation of the DNA-PK protein, has suggested that signal joints do fail to form. In our current study, we have analyzed signal and coding joint formation in a malignant glioma cell line, M059J, which was previously shown to be deficient in DNA-PK. Our quantitative analysis shows that full-length protein levels are reduced at least 200-fold, to a level that is undetectable, yet signal joint formation occurs at wild-type levels. This result demonstrates that at least this form of non-homologous DNA end joining can occur in the absence of DNA-PK.
对DNA依赖性蛋白激酶(DNA-PK)在DNA双链断裂修复和V(D)J重组中作用的分析主要基于对小鼠严重联合免疫缺陷(scid)的研究,在该小鼠中,仅蛋白的C末端2%被缺失,其余98%以在正常数量级范围内的水平表达。在小鼠scid中,尽管编码连接的形成减少了三个数量级以上,但信号连接的形成仍以正常水平被观察到。相比之下,一种密切相关的蛋白Ku对于编码连接和信号连接的形成都是必需的。基于这些观察结果,一个合理的假设是DNA-PK蛋白的缺失(而不仅仅是其C末端2%的截短)会消除信号连接的形成以及编码连接的形成。事实上,一项对马严重联合免疫缺陷(SCID)的研究表明信号连接确实无法形成,在该研究中DNA-PK蛋白有更大程度的截短。在我们当前的研究中,我们分析了恶性胶质瘤细胞系M059J中的信号连接和编码连接的形成,该细胞系先前已被证明缺乏DNA-PK。我们的定量分析表明全长蛋白水平至少降低了200倍,降至无法检测的水平,但信号连接的形成仍以野生型水平发生。这一结果表明,至少这种形式的非同源DNA末端连接可以在没有DNA-PK的情况下发生。