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必需哺乳动物蛋白 TTF-1 的 DNA 结合域的结构特征。

Structural characterization of DNA-binding domain of essential mammalian protein TTF 1.

机构信息

School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi, UP 221005, India.

Department of Pharmaceutical Engineering & Technology, Indian Institute of Technology (B.H.U.), Varanasi, UP 221005, India.

出版信息

Biosci Rep. 2024 Aug 28;44(8). doi: 10.1042/BSR20240800.

Abstract

Transcription Termination Factor 1 (TTF1) is a multifunctional mammalian protein with vital roles in various cellular processes, including Pol I-mediated transcription initiation and termination, pre-rRNA processing, chromatin remodelling, DNA damage repair, and polar replication fork arrest. It comprises two distinct functional regions; the N-terminal regulatory region (1-445 aa), and the C-terminal catalytic region (445-859 aa). The Myb domain located at the C-terminal region is a conserved DNA binding domain spanning from 550 to 732 aa (183 residues). Despite its critical role in various cellular processes, the physical structure of TTF1 remains unsolved. Attempts to purify the functional TTF1 protein have been unsuccessful till date. Therefore, we focused on characterizing the Myb domain of this essential protein. We started with predicting a 3-D model of the Myb domain using homology modelling, and ab-initio method. We then determined its stability through MD simulation in an explicit solvent. The model predicted is highly stable, which stabilizes at 200ns. To experimentally validate the computational model, we cloned and expressed the codon optimized Myb domain into a bacterial expression vector and purified the protein to homogeneity. Further, characterization of the protein shows that, Myb domain is predominantly helical (65%) and is alone sufficient to bind the Sal Box DNA. This is the first-ever study to report a complete in silico model of the Myb domain, which is physically characterized. The above study will pave the way towards solving the atomic structure of this essential mammalian protein.

摘要

转录终止因子 1(TTF1)是一种多功能的哺乳动物蛋白,在多种细胞过程中发挥着重要作用,包括 Pol I 介导的转录起始和终止、pre-rRNA 加工、染色质重塑、DNA 损伤修复和极性复制叉停滞。它由两个不同的功能区域组成;N 端调节区(1-445 aa)和 C 端催化区(445-859 aa)。位于 C 端区域的 Myb 结构域是一个保守的 DNA 结合结构域,跨越 550 至 732 aa(183 个残基)。尽管 TTF1 在多种细胞过程中具有关键作用,但它的物理结构仍然没有得到解决。迄今为止,尝试纯化功能性 TTF1 蛋白的尝试都没有成功。因此,我们专注于研究这种必需蛋白的 Myb 结构域。我们首先使用同源建模和从头计算方法预测 Myb 结构域的 3D 模型。然后,我们通过在明确定溶剂中的 MD 模拟来确定其稳定性。预测的模型非常稳定,在 200ns 时达到稳定。为了实验验证计算模型,我们将优化后的密码子 Myb 结构域克隆并表达到细菌表达载体中,并将蛋白质纯化为均一性。进一步的蛋白质特性表明,Myb 结构域主要是螺旋(65%),并且单独足以结合 Sal 盒 DNA。这是首次报道 Myb 结构域的完整计算模型,并对其进行了物理特性分析。上述研究将为解决这种重要的哺乳动物蛋白的原子结构铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be3/11358750/b88f708fa4e2/bsr-44-bsr20240800-g1.jpg

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