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Rad54B Targeting to DNA Double-Strand Break Repair Sites Requires Complex Formation with S100A11

机译:靶向DNA双链断裂修复位点的Rad54B需要与S100A11形成复杂的结构

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摘要

S100A11 is involved in a variety of intracellular activities such as growth regulation and differentiation. To gain more insight into the physiological role of endogenously expressed S100A11, we used a proteomic approach to detect and identify interacting proteins in vivo. Hereby, we were able to detect a specific interaction between S100A11 and Rad54B, which could be confirmed under in vivo conditions. Rad54B, a DNA-dependent ATPase, is described to be involved in recombinational repair of DNA damage, including DNA double-strand breaks (DSBs). Treatment with bleomycin, which induces DSBs, revealed an increase in the degree of colocalization between S100A11 and Rad54B. Furthermore, S100A11/Rad54B foci are spatially associated with sites of DNA DSB repair. Furthermore, while the expression of p21WAF1/CIP1 was increased in parallel with DNA damage, its protein level was drastically down-regulated in damaged cells after S100A11 knockdown. Down-regulation of S100A11 by RNA interference also abolished Rad54B targeting to DSBs. Additionally, S100A11 down-regulated HaCaT cells showed a restricted proliferation capacity and an increase of the apoptotic cell fraction. These observations suggest that S100A11 targets Rad54B to sites of DNA DSB repair sites and identify a novel function for S100A11 in p21-based regulation of cell cycle.
机译:S100A11参与多种细胞内活动,例如生长调节和分化。为了深入了解内源性表达的S100A11的生理作用,我们使用了蛋白质组学方法来检测和鉴定体内相互作用的蛋白质。因此,我们能够检测到S100A11和Rad54B之间的特异性相互作用,这可以在体内条件下得到证实。 Rad54B是一种DNA依赖型ATP酶,据称参与DNA损伤的重组修复,包括DNA双链断裂(DSB)。博来霉素诱导DSB的治疗显示S100A11和Rad54B之间的共定位程度增加。此外,S100A11 / Rad54B病灶在空间上与DNA DSB修复位点相关。此外,虽然p21 WAF1 / CIP1 的表达与DNA损伤同时增加,但在S100A11敲低后,受损细胞中其蛋白水平却急剧下降。 RNA干扰对S100A11的下调也消除了针对DSB的Rad54B。此外,S100A11下调的HaCaT细胞显示出有限的增殖能力和凋亡细胞分数的增加。这些观察结果表明,S100A11将Rad54B靶向DNA DSB修复位点,并在基于p21的细胞周期调控中确定了S100A11的新功能。

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