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KCTD 蛋白与 Cullin 3 之间结构识别的综合分析

A Comprehensive Analysis of the Structural Recognition between KCTD Proteins and Cullin 3.

机构信息

Institute of Molecular Biology and Pathology, CNR c/o Department Chemistry, Sapienza University of Rome, 00185 Rome, Italy.

Institute of Biostructures and Bioimaging, CNR, 80131 Naples, Italy.

出版信息

Int J Mol Sci. 2024 Feb 4;25(3):1881. doi: 10.3390/ijms25031881.

Abstract

KCTD ((K)potassium Channel Tetramerization Domain-containing) proteins constitute an emerging class of proteins involved in fundamental physio-pathological processes. In these proteins, the BTB domain, which represents the defining element of the family, may have the dual role of promoting oligomerization and favoring functionally important partnerships with different interactors. Here, by exploiting the potential of recently developed methodologies for protein structure prediction, we report a comprehensive analysis of the interactions of all KCTD proteins with their most common partner Cullin 3 (Cul3). The data here presented demonstrate the impressive ability of this approach to discriminate between KCTDs that interact with Cul3 and those that do not. Indeed, reliable and stable models of the complexes were only obtained for the 15 members of the family that are known to interact with Cul3. The generation of three-dimensional models for all KCTD-Cul3 complexes provides interesting clues on the determinants of the structural basis of this partnership as clear structural differences emerged between KCTDs that bind or do not bind Cul3. Finally, the availability of accurate three-dimensional models for KCTD-Cul3 interactions may be valuable for the ad hoc design and development of compounds targeting specific KCTDs that are involved in several common diseases.

摘要

KCTD(钾通道四聚化结构域蛋白)蛋白构成了一类新兴的蛋白,参与基本的生理病理过程。在这些蛋白中,BTB 结构域是家族的标志性结构域,可能具有双重作用,既促进寡聚化,又有利于与不同相互作用蛋白形成功能重要的伙伴关系。在这里,我们利用最近开发的蛋白质结构预测方法的潜力,对所有 KCTD 蛋白与其最常见的伴侣 Cullin 3(Cul3)的相互作用进行了全面分析。这里呈现的数据证明了该方法能够区分与 Cul3 相互作用的 KCTD 和不相互作用的 KCTD 的惊人能力。实际上,只有已知与 Cul3 相互作用的家族的 15 个成员才能获得复合物的可靠且稳定的模型。所有 KCTD-Cul3 复合物的三维模型的生成为揭示这种伙伴关系的结构基础的决定因素提供了有趣的线索,因为在与 Cul3 结合或不结合的 KCTD 之间出现了明显的结构差异。最后,获得 KCTD-Cul3 相互作用的准确三维模型对于针对涉及多种常见疾病的特定 KCTD 的特定化合物的设计和开发可能具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7537/10856315/849c2a30f1ef/ijms-25-01881-g001.jpg

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