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A fragment-based approach applied to a highly flexible target: Insights and challenges towards the inhibition of HSP70 isoforms

机译:一种基于片段的方法适用于高度灵活的目标:对Hsp70同种型抑制的洞察力和挑战

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The heat shock protein 70s (HSP70s) are molecular chaperones implicated in many cancers and of significant interest as targets for novel cancer therapies. Several HSP70 inhibitors have been reported, but because the majority have poor physicochemical properties and for many the exact mode of action is poorly understood, more detailed mechanistic and structural insight into ligand-binding to HSP70s is urgently needed. Here we describe the first comprehensive fragment-based inhibitor exploration of an HSP70 enzyme, which yielded an amino-quinazoline fragment that was elaborated to a novel ATP binding site ligand with different physicochemical properties to known adenosine-based HSP70 inhibitors. Crystal structures of amino-quinazoline ligands bound to the different conformational states of the HSP70 nucleotide binding domain highlighted the challenges of a fragment-based approach when applied to this particular flexible enzyme class with an ATP-binding site that changes shape and size during its catalytic cycle. In these studies we showed that Ser275 is a key residue in the selective binding of ATP. Additionally, the structural data revealed a potential functional role for the ATP ribose moiety in priming the protein for the formation of the ATP-bound pre-hydrolysis complex by influencing the conformation of one of the phosphate binding loops.
机译:热休克蛋白70s(Hsp70s)是在许多癌症中涉及的分子伴侣,以及显着兴趣作为新型癌症治疗的靶标。已经报道了几种HSP70抑制剂,但由于大多数物理化学性质差,并且对于许多确切的作用方式很差,迫切需要更详细地理解与Hsp70s的配体结合的机械和结构洞察力。在这里,我们描述了一种HSP70酶的第一种综合基于片段的抑制剂探索,其产生了一种氨基喹唑啉片段,其被阐述为具有不同理化性质的新型ATP结合位点配体,与已知的基于腺苷的HSP70抑制剂具有不同的物理化学性质。与HSP70核苷酸结合结构域不同综合象形态结合的氨基喹唑啉配体的晶体结构突出了基于片段的方法的挑战,当用ATP结合位点施加到该特定的柔性酶类时,其在其催化剂期间改变形状和尺寸循环。在这些研究中,我们表明Ser275是ATP的选择性结合中的关键残留物。另外,结构数据揭示了通过影响磷酸盐结合环之一的构象来灌注蛋白质以形成ATP结合的预水解复合物的蛋白质在蛋白质中灌注蛋白质的潜在功能作用。

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