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Cloning of cDNA and prediction of peptide structure of Plzf expressed in the spermatogonial cells of Labeo rohita

机译:罗汉果精原细胞cDNA表达的克隆及Plzf肽结构的预测

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The promyelocytic leukemia zinc finger (Plzf) gene containing an evolutionary conserved BTB (bric-a-brac/tramtrack/broad complex) domain plays a key role in self-renewal of mammalian spermatogonial stem cells (SSCs) via recruiting transcriptional co-repressors. Little is known about the function of Plzf in vertebrate,especially in fish species. To gain better understanding of its role in fishes, we have cloned Plzf from the testis of Labeo rohita (rohu), a commercially important freshwater carp. The full-length cDNA contains an open reading frame (ORF) of 2004 bp translatable to 667 amino acids (aa) containing a conserved N-terminal BTB domain and C-terminal C2H2-zinc finger motifs. L. rohita Plzf, which is phylogenetically related to Danio rerio counterpart, abundantly expressed in spermatogonial stem cells (SSCs). A three-dimensional (3D) model of BTB domain of Plzf protein was constructed by homology modeling approach. Molecular docking on this 3D structure established a homo-dimer between two BTB domains creating a charged pocket containing conserved aa residues: L33, C34, D35 and R49. Thus, Plzf of SSC is structurally and possibly functionally conserved. The conserved aa residues in the cleft resulting from Plzf BTB self-association are likely to be the binding platform for interaction with recruited co-repressor peptides. The identified Plzf could be the first step towards exploring its role in rohu SSC behavior.
机译:含有进化保守的BTB(bric-a-brac / tramtrack / broad complex)域的早幼粒细胞白血病锌指(Plzf)基因在哺乳动物精原干细胞(SSCs)自我更新中起关键作用,通过募集转录共抑制因子。关于Plzf在脊椎动物,特别是鱼类中的功能了解甚少。为了更好地了解其在鱼类中的作用,我们从商业上重要的淡水鲤鱼Labeo rohita(rohu)的睾丸中克隆了Plzf。全长cDNA包含一个2004 bp的开放阅读框(ORF),可翻译为667个氨基酸(aa),其中包含一个保守的N端BTB结构域和C端C2H2-锌指基序。罗氏乳杆菌Ll rohita Plzf在系统发育上与Danio rerio对应物相关,在精原干细胞(SSC)中大量表达。通过同源建模方法构建了Plzf蛋白BTB结构域的三维(3D)模型。在此3D结构上的分子对接在两个BTB结构域之间建立了同型二聚体,从而形成了一个带电荷的口袋,其中包含保守的氨基酸残基:L33,C34,D35和R49。因此,SSC的Plzf在结构上和在功能上是保守的。由Plzf BTB自缔合产生的裂口中保守的aa残基可能是与募集的共阻抑肽相互作用的结合平台。确定的Plzf可能是探索其在rohu SSC行为中的作用的第一步。

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