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Ribosomal gene clusters are uniquely proportioned between open and closed chromatin structures in both tomato leaf cells and exponentially growing suspension cultures.

机译:核糖体基因簇在番茄叶片细胞和指数生长的悬浮培养物中的开放和封闭染色质结构之间按比例分配。

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摘要

The accessibility of regulatory molecules to specific DNA sequences and chromatin regions in the nucleus is crucial to gene expression. In this study, we examined the chromatin structure in tomato leaf cells and in exponentially growing tomato cell suspension cultures. The structure of ribosomal chromatin was investigated by micrococcal nuclease and psoralen photocrosslinking. We showed that ribosomal genes in tomato are folded into two distinct types of chromatin: an open chromatin conformation and a closed nucleosomecontaining chromatin. In contrast to previous findings in Friend cells, where half of the ribosomal genes were found to be complexed within an inactive chromatin structure, we demonstrated that the canonical nucleosome-containing chromatin is present in the majority (approximately 80%) of the tomato rRNA-encoding DNA clusters. The minor open chromatin population (approximately 20% of the ribosomal genes) could be detected only after analysis following psoralen crosslinking. The relative amounts of the two ribosomal chromatin structures are similar in stationary and exponentially growing cells. This suggests that the proportions of open and closed chromatin structures present in either stationary or exponentially growing tomato cells are not dependent on the transcriptional process.
机译:调节分子对细胞核中特定DNA序列和染色质区域的可及性对基因表达至关重要。在这项研究中,我们检查了番茄叶片细胞和指数生长的番茄细胞悬浮培养物中的染色质结构。通过微球菌核酸酶和补骨脂素光交联研究核糖体染色质的结构。我们表明,番茄中的核糖体基因被折叠成两种不同类型的染色质:开放的染色质构象和封闭的含核小体的染色质。与之前在Friend细胞中发现的发现相反,在Friend细胞中,一半的核糖体基因被发现在无活性的染色质结构内复合,我们证明了番茄rRNA-的大部分(约80%)中都存在含典型核小体的染色质。编码DNA簇。仅在补骨脂素交联后进行分析后,才能检测到较小的开放染色质群体(约占核糖体基因的20%)。在静止和指数生长的细胞中,两个核糖体染色质结构的相对量相似。这表明在静止或指数生长的番茄细胞中存在的开放和封闭染色质结构的比例不依赖于转录过程。

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