Ray Sreerupa, Grove Anne
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.
Nucleic Acids Res. 2009 Oct;37(19):6389-99. doi: 10.1093/nar/gkp695. Epub 2009 Sep 2.
DNA damage is a common hazard that all cells have to combat. Saccharomyces cerevisiae HMO2 is a high mobility group protein (HMGB) that is a component of the chromatin-remodeling complex INO80, which is involved in double strand break (DSB) repair. We show here using DNA end-joining and exonuclease protection assays that HMO2 binds preferentially to DNA ends. While HMO2 binds DNA with both blunt and cohesive ends, the sequence of a single stranded overhang significantly affects binding, supporting the conclusion that HMO2 recognizes features at DNA ends. Analysis of the effect of duplex length on the ability of HMO2 to protect DNA from exonucleolytic cleavage suggests that more than one HMO2 must assemble at each DNA end. HMO2 binds supercoiled DNA with higher affinity than linear DNA and has a preference for DNA with lesions such as pairs of tandem mismatches; however, comparison of DNA constructs of increasing length suggests that HMO2 may not bind stably as a monomer to distorted DNA. The remarkable ability of HMO2 to protect DNA from exonucleolytic cleavage, combined with reports that HMO2 arrives early at DNA DSBs, suggests that HMO2 may play a role in DSB repair beyond INO80 recruitment.
DNA损伤是所有细胞都必须应对的常见危害。酿酒酵母HMO2是一种高迁移率族蛋白(HMGB),是染色质重塑复合物INO80的一个组成部分,该复合物参与双链断裂(DSB)修复。我们在此使用DNA末端连接和核酸外切酶保护试验表明,HMO2优先结合DNA末端。虽然HMO2能结合平端和粘性末端的DNA,但单链突出端的序列会显著影响结合,这支持了HMO2识别DNA末端特征的结论。对双链长度对HMO2保护DNA免受核酸外切酶切割能力的影响分析表明,每个DNA末端必须组装不止一个HMO2。HMO2结合超螺旋DNA的亲和力高于线性DNA,并且偏好具有诸如串联错配等损伤的DNA;然而,对长度增加的DNA构建体的比较表明,HMO2可能不会以单体形式稳定结合到扭曲的DNA上。HMO2保护DNA免受核酸外切酶切割的显著能力,再加上有报道称HMO2能早期到达DNA双链断裂处,这表明HMO2可能在DSB修复中发挥超出INO80募集的作用。