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首页> 外文期刊>Journal of Molecular Biology >Co-crystallization with conformation-specific designed ankyrin repeat proteins explains the conformational flexibility of BCL-W
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Co-crystallization with conformation-specific designed ankyrin repeat proteins explains the conformational flexibility of BCL-W

机译:与构象特异性设计的锚蛋白重复蛋白共结晶解释了BCL-W的构象灵活性

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BCL-W is a member of the BCL-2 family of anti-apoptotic proteins. A key event in the regulation of apoptosis is the heterodimerization between anti-apoptotic and pro-apoptotic family members, which involves a conserved surface-exposed groove on the anti-apoptotic proteins. Crystal structures of the ligand binding-competent conformation exist for all anti-apoptotic family members, with the exception of BCL-W, due to the flexibility of the BCL-W groove region. Existing structures had suggested major deviations of the BCL-W groove region from the otherwise structurally highly related remaining anti-apoptotic family members. To capture its ligand binding-competent conformation by counteracting the conformational flexibility of the BCL-W groove, we had selected high-affinity groove-binding designed ankyrin repeat proteins (DARPins) using ribosome display. We now determined two high-resolution crystal structures of human BCL-W in complex with different DARPins at resolutions 1.5 and 1.85 ?, in which the structure of BCL-W is virtually identical, and BCL-W adopts a conformation extremely similar to the ligand-free conformation of its closest relative BCL-XL in both structures. However, distinct differences to all previous BCL-W structures are evident, notably in the ligand-binding region. We provide the first structural explanation for the conformational flexibility of the BCL-W groove region in comparison to other BCL-2 family members. Due to the importance of the anti-apoptotic BCL-2 family as drug targets, the presented crystal structure of ligand binding-competent BCL-W may serve as a valuable basis for structure-based drug design in the future and provides a missing piece for the structural characterization of this protein family.
机译:BCL-W是BCL-2抗凋亡蛋白家族的成员。凋亡调控中的关键事件是抗凋亡家族成员与促凋亡家族成员之间的异源二聚化,这涉及抗凋亡蛋白上保守的表面暴露槽。由于BCL-W凹槽区的柔性,除BCL-W外,所有抗凋亡家族成员均存在配体结合能力构象的晶体结构。现有的结构表明,BCL-W凹槽区域与其他在结构上高度相关的剩余抗凋亡家族成员存在较大差异。为了通过抵消BCL-W凹槽的构象柔性来捕获其配体结合能力的构象,我们使用核糖体展示选择了高亲和力的凹槽结合设计的锚蛋白重复蛋白(DARPins)。我们现在在分辨率为1.5和1.85?的条件下,确定了具有不同DARPins的人类BCL-W的两种高分辨率晶体结构,其中BCL-W的结构实际上是相同的,并且BCL-W的构象与配体极为相似在两个结构中其最接近的相对BCL-XL的无构象。但是,与所有先前的BCL-W结构明显不同,特别是在配体结合区域。与其他BCL-2家族成员相比,我们为BCL-W凹槽区域的构象柔性提供了第一个结构解释。由于抗凋亡的BCL-2家族作为药物靶标的重要性,所提出的具有配体结合能力的BCL-W的晶体结构可能为将来基于结构的药物设计提供有价值的基础,并为该蛋白质家族的结构特征。

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