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Merits and pitfalls of conventional and covalent docking in identifying new hydroxyl aryl aldehyde like compounds as human IRE1 inhibitors

机译:常规和共价脱离在鉴定新的羟基芳基醛,如人IRE1抑制剂的羟基芳基醛相似的优点和缺陷

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摘要

IRE1 is an endoplasmic reticulum (ER) bound transmembrane bifunctional kinase and endoribonuclease protein crucial for the unfolded protein response (UPR) signaling pathway. Upon ER stress, IRE1 homodimerizes, oligomerizes and autophosphorylates resulting in endoribonuclease activity responsible for excision of a 26 nucleotide intron from the X-box binding protein 1 (XBP1) mRNA. This unique splicing mechanism results in activation of the XBP1s transcription factor to specifically restore ER stress. Small molecules targeting the reactive lysine residue (Lys907) in IRE1α's RNase domain have been shown to inhibit the cleavage of XBP1 mRNA. Crystal structures of murine IRE1 in complex with covalently bound hydroxyl aryl aldehyde (HAA) inhibitors show that these molecules form hydrophobic interactions with His910 and Phe889, a hydrogen bond with Tyr892 and an indispensable Schiff-base with Lys907. The availability of such data prompted interest in exploring structure-based drug design as a strategy to develop new covalently binding ligands. We extensively evaluated conventional and covalent docking for drug discovery targeting the catalytic site of the RNase domain. The results indicate that neither computational approach is fully successful in the current case, and we highlight herein the potential and limitations of the methods for the design of novel IRE1 RNase binders.
机译:IS1是内质网(ER)结合的跨膜双官能激酶和内衣核酸酶蛋白至关重要,用于展开蛋白质反应(UPR)信号通路。在ER应激后,IRE1同型二聚体,寡聚化和自磷酸盐酸盐,其导致具有来自X盒结合蛋白1(XBP1)mRNA的26个核苷酸内部切除26个核苷酸内含子的内衣核酸酶活性。这种独特的剪接机制导致XBP1S转录因子的激活,以具体恢复ER应力。靶向IS1α的RNase结构域中的反应性赖氨酸残基(LYS907)的小分子已显示抑制XBP1 mRNA的切割。与共价结合的羟基芳基醛(HAA)抑制剂的杂鼠IRE1晶体结构表明,这些分子与HIS910和PHE889形成了疏水性相互作用,与TYR892的氢键和LYS907具有不可缺少的席夫碱。这种数据的可用性促使令人兴趣探索基于结构的药物设计作为开发新的共价结合配体的策略。我们广泛评估靶向靶向RNase结构域的催化位点的药物发现的常规和共价对接。结果表明,在当前情况下,既不是计算方法在目前的情况下都是完全成功的,我们突出了本文的设计方法的潜在和限制,用于设计新的IS1 rNase粘合剂的方法。

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