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Identification of G-Quadruplex-Binding Protein from the Exploration of RGG Motif/G-Quadruplex Interactions

机译:从RGG基序/ G四联体相互作用的探索中鉴定G四联体结合蛋白。

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The arginine/glycine-rich region termed the RGG domain is usually found in G-quadruplex (G4)-binding proteins and is important in G4-protein interactions. Studies on the binding mechanism of RGG domains found that small segments (RGG motif) inside the domain contribute greatly to the G4 binding affinity. However, unlike the entire RGG domains that have been broadly explored, the role of the RGG motif remains obscure, with very limited study. Herein, to clarify the role of the RGG motif in G4-protein interactions, we systematically investigated the binding affinity and mode between RGG-motif peptides and G4s. The internal arrangement of RGG repeats and gap amino acids played a more crucial role in the G4-binding mechanism than a critical number of RGG repeats. Arginines and phenylalanines at the exact position of the RGG motif might enable additional hydrogen bonding and pi-stacking interaction with nucleobases and strengthen the binding of G4. Impressively, proceeding from a G4-binding RGG peptide, 12, discovered above, we identified the cold-inducible RNA-binding protein (CIRBP) as a new G4 DNA -binding protein both in vitro and in cells. In addition, we found that the key amino acids for G4 binding in peptide 12 and CIRBP were highly similar, and peptide 12 clearly played a key role in the G4 binding of CIRBP. This report is the first in which a G4-binding protein was identified from exploration of the G4-binding RGG motif. Our findings suggest a novel strategy for discovering new G4 -binding proteins by exploring key peptide segments.
机译:富含精氨酸/甘氨酸的区域称为RGG结构域,通常存在于G四联体(G4)结合蛋白中,并且在G4蛋白相互作用中很重要。对RGG结构域结合机制的研究发现,结构域内部的小片段(RGG基序)对G4结合亲和力有很大贡献。但是,与已被广泛探索的整个RGG结构域不同,RGG基序的作用仍然不清楚,研究非常有限。在本文中,为了阐明RGG基序在G4蛋白相互作用中的作用,我们系统地研究了RGG基序肽与G4之间的结合亲和力和模式。 RGG重复序列的内部排列和缺口氨基酸在G4结合机制中起着比关键数量的RGG重复序列更重要的作用。在RGG基序的确切位置上的精氨酸和苯丙氨酸可能使附加的氢键和与核碱基的π堆积相互作用并增强G4的结合。令人印象深刻的是,从上面发现的与G4结合的RGG肽12开始,我们在体外和细胞中鉴定了冷诱导RNA结合蛋白(CIRBP)作为新的G4 DNA结合蛋白。此外,我们发现肽12和CIRBP中G4结合的关键氨基酸高度相似,而肽12显然在CIRBP的G4结合中起关键作用。该报告是首次通过探索与G4结合的RGG图案鉴定出G4结合蛋白的报告。我们的发现提出了通过探索关键的肽段来发现新的G4结合蛋白的新策略。

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