腺病毒早期1A区(E1A)的转激活结构域:研究折叠动力学和聚集

IF 2.7 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Research in Structural Biology Pub Date : 2022-01-01 DOI:10.1016/j.crstbi.2022.01.001
Nitin Sharma , Kundlik Gadhave , Prateek Kumar , Rajanish Giri
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引用次数: 1

摘要

腺病毒早期1A区(E1A)癌蛋白是一种内在无序的分子枢纽蛋白。它参与与人类细胞转录共激活因子的不同结构域的结合,如视网膜母细胞瘤(pRb)、creb结合蛋白(CBP)及其旁系蛋白p300。已知E1A的保守区1 (TAD)在与转录接头锌指2 (TAZ2)相互作用时发生结构转变和折叠。先前关于Taz2-E1A研究的报道表明E1A-TAD形成螺旋构象。然而,TAD区域的单独折叠行为尚未得到详细的研究。在这里,我们阐明了E1A肽在不同温度和溶液条件下的折叠行为。此外,我们还研究了大分子拥挤对E1A-TAD肽的影响。此外,我们还使用MoRF预测因子预测了E1A的分子识别特征。预测的morf与文献中TAZ2相互作用转录调控过程中观察到的结构转变一致。此外,作为morf的一般规则,E1A在酒精和渗透液溶液中发生螺旋转变。最后,我们研究了E1A的聚集行为,在那里我们观察到E1A可以形成淀粉样蛋白样聚集体,对哺乳动物细胞具有细胞毒性。
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Transactivation domain of Adenovirus Early Region 1A (E1A): Investigating folding dynamics and aggregation

Transactivation domain of Adenovirus Early region 1A (E1A) oncoprotein is an intrinsically disordered molecular hub protein. It is involved in binding to different domains of human cell transcriptional co-activators such as retinoblastoma (pRb), CREB-binding protein (CBP), and its paralogue p300. The conserved region 1 (TAD) of E1A is known to undergo structural transitions and folds upon interaction with transcriptional adaptor zinc finger 2 (TAZ2). Previous reports on Taz2-E1A studies have suggested the formation of helical conformations of E1A-TAD. However, the folding behavior of the TAD region in isolation has not been studied in detail. Here, we have elucidated the folding behavior of E1A peptide at varied temperatures and solution conditions. Further, we have studied the effects of macromolecular crowding on E1A-TAD peptide. Additionally, we have also predicted the molecular recognition features of E1A using MoRF predictors. The predicted MoRFs are consistent with its structural transitions observed during TAZ2 interactions for transcriptional regulation in literature. Also, as a general rule of MoRFs, E1A undergoes helical transitions in alcohol and osmolyte solution. Finally, we studied the aggregation behavior of E1A, where we observed that the E1A could form amyloid-like aggregates that are cytotoxic to mammalian cells.

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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
33
审稿时长
104 days
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