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RNF168, a new RING finger, MIU-containing protein that modifies chromatin by ubiquitination of histones H2A and H2AX

机译:RNF168,一种新的无名指,含MIU的蛋白,可通过组蛋白H2A和H2AX泛素化修饰染色质

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Background Modulation of chromatin structure has emerged as a critical molecular device to control gene expression. Histones undergo different post-translational modifications that increase chromatin accessibility to a number of regulatory factors. Among them, histone ubiquitination appears relevant in nuclear processes that govern gene silencing, either by inhibiting or activating transcription, and maintain genome stability, acting as scaffold to properly organize the DNA damage response. Thus, it is of paramount importance the identification and the characterization of new ubiquitin ligases that address histones. Results We identified and characterized RNF168, a new chromatin-associated RING finger protein. We demonstrated that RNF168 is endowed with ubiquitin ligase activity both in vitro and in vivo, which targets histones H2A and H2AX, but not H2B, forming K63 polyubiquitin chains. We previously described the presence within RNF168 sequence of two MIU domains, responsible for the binding to ubiquitinated proteins. Here we showed that inactivation of the MIUs impairs ubiquitin binding ability in vitro and reduces chromatin association of RNF168 in vivo. Moreover, upon formation of DNA double strand breaks induced by chemical and physical agents, RNF168 is recruited to the DNA damage foci, where it co-localizes with γH2AX and 53BP1. The localization of RNF168 at the site of damage highly increases the local concentration of ubiquitinated proteins and determines the prolonged ubiquitination signal. Conclusion The RING finger protein RNF168 is a new ubiquitin ligase that functions as chromatin modifier, through histone ubiquitination. We hypothesize a dual function for RNF168. In normal condition RNF168 modifies chromatin structure by modulating ubiquitination of histone H2A. Upon DNA lesions, RNF168 is recruited to DNA damage response foci where it contributes to increase the amount of ubiquitinated proteins, thereby facilitating the downstream signalling cascade.
机译:背景技术染色质结构的调节已成为控制基因表达的关键分子装置。组蛋白会经历不同的翻译后修饰,从而增加染色质对许多调控因子的可及性。其中,组蛋白泛素化在控制基因沉默的核过程中似乎是相关的,该过程通过抑制或激活转录并维持基因组稳定性来充当支架,以适当地组织DNA损伤反应。因此,鉴定组蛋白的新泛素连接酶的鉴定和表征是至关重要的。结果我们鉴定并表征了一种新的染色质相关的RING指蛋白RNF168。我们证明RNF168在体外和体内均具有泛素连接酶活性,该酶靶向组蛋白H2A和H2AX,但不靶向H2B,形成K63多泛素链。我们先前描述了两个MIU域在RNF168序列中的存在,这两个域负责与泛素化蛋白的结合。在这里,我们显示MIU的失活在体外损害泛素结合能力,并在体内降低RNF168的染色质缔合。此外,在化学和物理作用剂诱导的DNA双链断裂形成后,RNF168被募集到DNA损伤灶,在该处与γH2AX和53BP1共定位。 RNF168在损伤部位的定位大大增加了泛素化蛋白质的局部浓度,并确定了延长的泛素化信号。结论RING指蛋白RNF168是一种新的泛素连接酶,通过组蛋白泛素化作用起染色质修饰剂的作用。我们假设RNF168具有双重功能。在正常情况下,RNF168通过调节组蛋白H2A的泛素化修饰染色质结构。在发生DNA损伤时,RNF168被募集到DNA损伤反应灶,在该处它有助于增加泛素化蛋白的量,从而促进下游信号传导级联。

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