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在溶组织内阿米巴中,Myb-SHAQKYF 家族的全基因组和结构分析。

Genome-wide and structural analysis of the Myb-SHAQKYF family in Entamoeba histolytica.

机构信息

Posgrado en Ciencias Genómicas, Universidad Autónoma de la Ciudad de México, Ciudad de México, México.

Instituto de Química, Universidad Nacional Autónoma de México, Ciudad de México, México.

出版信息

Biochim Biophys Acta Proteins Proteom. 2021 Apr;1869(4):140601. doi: 10.1016/j.bbapap.2021.140601. Epub 2021 Jan 7.

Abstract

Amoebiasis is the third leading cause of death among protozoon parasitic diseases in the lower-middle income countries. Understanding the molecular events that control gene expression such as transcription factors, their DNA binding mode and target sequences can help to develop new antiamoebic drugs against Entamoeba histolytica. In this paper we performed a genome and structural analysis of a specific transcription factor. The genome of E. histolytica codifies for 9 EhMybSHAQKYF proteins, which are a family within a large group of 34 Myb-DNA-binding domain (Myb-DBD) containing proteins. Here we compared Entamoeba Myb-SHAQKYF proteins with Myb-like proteins from the Reveille (RVE) family, important regulators of plant circadian networks. This comparison could lead to stablish their role in E. histolytica life cycle. We show that the ehmybshaqkyf genes are differentially expressed in trophozoites under basal cell culture conditions. An in-silico analysis predicts that members of this group harbor a highly conserved and structured Myb-DBD and a large portion of intrinsically disordered residues. As the Myb-DBD of these proteins harbors a distinctive Q[VI]R[ST]HAQK[YF]F sequence in its putative third α-helix, we consider relevant to determine the three-dimensional (3D) structure of one of them. An NMR structure of the Myb-DBD of EhMybS3 shows that this protein is composed of three α-helices stabilized by a hydrophobic core, similar to Myb proteins of different kingdoms. It is remarkable that despite not sharing similarities in their amino acid sequences, the structure of the Myb-DBD of the EhMybS3 is well conserved in this early branching eukaryote.

摘要

阿米巴病是中低收入国家原生动物寄生虫病导致死亡的第三大原因。了解控制基因表达的分子事件,如转录因子、它们的 DNA 结合模式和靶序列,可以帮助开发针对溶组织内阿米巴的新型抗阿米巴药物。在本文中,我们对一种特定的转录因子进行了基因组和结构分析。溶组织内阿米巴的基因组编码了 9 种 EhMybSHAQKYF 蛋白,它们是包含 34 种 Myb-DNA 结合域(Myb-DBD)的一大类蛋白中的一个家族。在这里,我们将溶组织内阿米巴的 Myb-SHAQKYF 蛋白与 Reveille(RVE)家族的 Myb 样蛋白进行了比较,后者是植物生物钟网络的重要调节因子。这一比较可能有助于确定它们在溶组织内阿米巴生命周期中的作用。我们表明,在基础细胞培养条件下,滋养体中的 ehmybshaqkyf 基因表达存在差异。计算机分析预测,该组的成员具有高度保守和结构化的 Myb-DBD 和很大一部分的固有无序残基。由于这些蛋白质的 Myb-DBD 在其假定的第三α-螺旋中具有独特的 Q[VI]R[ST]HAQK[YF]F 序列,因此我们认为确定其中一种蛋白质的三维(3D)结构是相关的。EhMybS3 的 Myb-DBD 的 NMR 结构表明,该蛋白由三个α-螺旋组成,由疏水性核心稳定,类似于不同王国的 Myb 蛋白。值得注意的是,尽管在氨基酸序列上没有相似性,但 EhMybS3 的 Myb-DBD 结构在这个早期分支的真核生物中得到了很好的保守。

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