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首页> 外文期刊>Nucleic acids research >Laser-induced crosslinking of histones to DNA in chromatin and core particles: implications in studying histone-DNA interactions
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Laser-induced crosslinking of histones to DNA in chromatin and core particles: implications in studying histone-DNA interactions

机译:激光诱导的组蛋白与染色质和核心颗粒中的DNA交联:研究组蛋白与DNA相互作用的意义

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UV laser irradiation has been used to covalently crosslink histones to DNA in nuclei, chromatin and core particles and the presence of the different histone species in the covalently linked material was detected immunochemically. When nuclei were irradiated and then trypsinized to cleave the N- and C- terminal histone tails, no histones have been found covalently linked to DNA. This finding shows that UV laser-induced crosslinking of histories to DNA is accomplished via the non-structured domains only. This unexpected way of crosslinking operated in chromatin, H1-depleted chromatin and core particles, i.e. independently of the chromatin structure. The efficiency of crosslinking, however, showed such a dependence: whilst the yield of crosslinks was similar in total and H1-depleted chromatin, in core particles the efficiency was 3–4 times lower for H2A, H2B and H4 and 10–12 times lower for H3. The decreased crosslinking efficiency, especially dramatic in the case of 1–43, is attributed to a reduced number of binding sites, and, respectively, is considered as a direct evidence for interaction of nonstructered tails of core histones with linker DNA.
机译:紫外激光辐射已被用于将组蛋白与核,染色质和核心颗粒中的DNA共价交联,并通过免疫化学方法检测到在共价连接的材料中不同组蛋白的存在。当辐照细胞核,然后用胰蛋白酶裂解N和C末端的组蛋白尾巴时,没有发现与DNA共价连接的组蛋白。这一发现表明,紫外线激光诱导的历史交联到DNA仅通过非结构域完成。这种出乎意料的交联方式在染色质,贫氢的染色质和核心颗粒中起作用,即与染色质结构无关。然而,交联的效率显示出这种依赖性:尽管总的交联产率和H1耗尽的染色质的交联率相似,但在核心颗粒中,H2A,H2B和H4的效率低3-4倍,而低10-12倍对于H3。降低的交联效率,尤其是在1-43的情况下,是由于结合位点数量减少而引起的,分别被认为是核心组蛋白的非结构化尾巴与接头DNA相互作用的直接证据。

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