Institute of Biostructures and Bioimaging, CNR, Via Mezzocannone 16, 80134 Naples, Italy.
IRCCS SDN, Napoli, Via E. Gianturco 113, 80143 Naples, Italy.
Biomolecules. 2021 Dec 10;11(12):1862. doi: 10.3390/biom11121862.
One of the most striking features of KCTD proteins is their involvement in apparently unrelated yet fundamental physio-pathological processes. Unfortunately, comprehensive structure-function relationships for this protein family have been hampered by the scarcity of the structural data available. This scenario is rapidly changing due to the release of the protein three-dimensional models predicted by AlphaFold (AF). Here, we exploited the structural information contained in the AF database to gain insights into the relationships among the members of the KCTD family with the aim of facilitating the definition of the structural and molecular basis of key roles that these proteins play in many biological processes. The most important finding that emerged from this investigation is the discovery that, in addition to the BTB domain, the vast majority of these proteins also share a structurally similar domain in the C-terminal region despite the absence of general sequence similarities detectable in this region. Using this domain as reference, we generated a novel and comprehensive structure-based pseudo-phylogenetic tree that unraveled previously undetected similarities among the protein family. In particular, we generated a new clustering of the KCTD proteins that will represent a solid ground for interpreting their many functions.
KCTD 蛋白最显著的特征之一是它们参与了看似不相关但却是基础的生理病理过程。不幸的是,由于可用结构数据的缺乏,该蛋白家族的全面结构-功能关系一直受到阻碍。由于 AlphaFold(AF)发布的蛋白质三维模型,这种情况正在迅速改变。在这里,我们利用 AF 数据库中包含的结构信息来深入了解 KCTD 家族成员之间的关系,目的是促进定义这些蛋白质在许多生物过程中发挥关键作用的结构和分子基础。这项研究最重要的发现是,除了 BTB 结构域外,这些蛋白的绝大多数还在 C 端区域共享一个结构相似的结构域,尽管在该区域检测不到一般的序列相似性。我们使用该结构域作为参考,生成了一个新的、全面的基于结构的伪系统发生树,揭示了蛋白家族中以前未检测到的相似性。特别是,我们对 KCTD 蛋白进行了新的聚类,这将为解释它们的许多功能提供坚实的基础。