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Kluyveromyces lactis genome harbours a functional linker histone encoding gene

机译:乳酸克鲁维酵母基因组具有功能性接头组蛋白编码基因

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Linker histones are essential components of chromatin in eukaryotes. Through interactions with linker DNA and nucleosomes they facilitate folding and maintenance of higher-order chromatin structures and thus delicately modulate gene activity. The necessity of linker histones in lower eukaryotes appears controversial and dubious. Genomic data have shown that Schizosaccharomyces pombe does not possess genes encoding linker histones while Kluyveromyces lactis has been reported to have a pseudogene. Regarding this controversy, we have provided the first direct experimental evidence for the existence of a functional linker histone gene, KlLH1, in K. lactis genome. Sequencing of KlLH1 from both genomic DNA and copy DNA confirmed the presence of an intact open reading frame. Transcription and splicing of the KlLH1 sequence as well as translation of its mRNA have been studied. In silico analysis revealed homology of KlLH1p to the histone H1/ H5 protein family with predicted three domain structure characteristic for the linker histones of higher eukaryotes. This strongly proves that the yeast K. lactis does indeed possess a functional linker histone gene thus entailing the evolutionary preservation and significance of linker histones. The nucleotide sequences of KlLH1 are deposited in the GenBank under accession numbers KT826576, KT826577 and KT826578.
机译:接头组蛋白是真核生物中染色质的重要组成部分。通过与接头DNA和核小体的相互作用,它们有助于折叠和维持高级染色质结构,从而精细地调节基因活性。低等真核生物中接头组蛋白的必要性似乎存在争议和怀疑。基因组数据表明,粟酒裂殖酵母不具有编码接头组蛋白的基因,而据报道乳酸克鲁维酵母具有假基因。关于这一争议,我们提供了第一个直接实验证据,证明乳酸克鲁维酵母基因组中存在功能性接头组蛋白基因KlLH1。从基因组DNA和复制DNA测序KlLH1证实存在完整的开放阅读框。已经研究了KlLH1序列的转录和剪接以及其mRNA的翻译。在计算机分析中揭示了KlLH1p与组蛋白H1 / H5蛋白家族的同源性,具有针对高级真核生物的接头组蛋白的预测的三个结构域特征。这有力地证明了酵母乳酸克鲁维酵母确实具有功能性的接头组蛋白基因,因此需要接头组蛋白的进化保存和意义。 KILH1的核苷酸序列以登录号KT826576,KT826577和KT826578保藏在GenBank中。

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