Ramalingam Arivudainambi, Farmer George E, Stamato Thomas D, Prendergast George C
Lankenau Institute for Medical Research, Wynnewood, Pennsylvania 19096, USA.
Cell Cycle. 2007 Aug 1;6(15):1914-8. doi: 10.4161/cc.6.15.4514. Epub 2007 May 25.
The Bin1 gene encodes a BAR adapter protein that suppresses cancer by poorly defined mechanisms. In an effort to gain insights, we identified cellular proteins that form biochemical complexes with Bin1 protein. Here we report that Bin1 physically binds to Ku, a DNA end-binding protein that functions in telomere maintenance, apoptosis, and DNA repair. Both Ku70 and Ku80 were purified from human and murine cell extracts using the Bin1 BAR domain as an affinity matrix. A BAR domain mutation that destroys antioncogenic activity completely abolished Ku binding, supporting functional relevance. To further evaluate meaning, we investigated interactions between the Bin1 homolog hob1+ and the Ku homologs pku70+ and pku80+ in fission yeast. Notably, deleting pku70+ or pku80+ relieved the survival defect displayed by hob1delta cells after treatment with the DNA damaging agent phleomycin, suggesting that hob1+ may restrain Ku. Consistent with this notion, telomere length was altered in hob1delta cells. The potential relevance of Bin1-Ku interaction to cancer are discussed in light of these findings.
Bin1基因编码一种BAR衔接蛋白,其通过尚不明确的机制抑制癌症。为了深入了解,我们鉴定了与Bin1蛋白形成生化复合物的细胞蛋白。在此我们报告,Bin1与Ku直接结合,Ku是一种DNA末端结合蛋白,在端粒维持、细胞凋亡和DNA修复中发挥作用。使用Bin1 BAR结构域作为亲和基质,从人和小鼠细胞提取物中纯化出Ku70和Ku80。破坏抗癌活性的BAR结构域突变完全消除了Ku结合,支持其功能相关性。为了进一步评估其意义,我们研究了裂殖酵母中Bin1同源物hob1+与Ku同源物pku70+和pku80+之间的相互作用。值得注意的是,在用DNA损伤剂博来霉素处理后,缺失pku70+或pku80+可缓解hob1delta细胞显示的生存缺陷,这表明hob1+可能抑制Ku。与此观点一致,hob1delta细胞中的端粒长度发生了改变。根据这些发现,讨论了Bin1-Ku相互作用与癌症的潜在相关性。