Department of Biological Sciences, Bose Institute, Kolkata, India.
Department of Biotechnology, Haldia Institute of Technology, Haldia, India.
J Biomol Struct Dyn. 2024;42(23):13187-13200. doi: 10.1080/07391102.2023.2274978. Epub 2023 Oct 30.
FKBP22, an -made peptidyl-prolyl - isomerase, has shown considerable homology with Mip-like virulence factors. While the C-terminal domain of this enzyme is used for executing catalytic function and binding inhibitor, the N-terminal domain is employed for its dimerization. To precisely determine the underlying factors of FKBP22 dimerization, its structural model, developed using a suitable template, was carefully inspected. The data show that the dimeric FKBP22, like dimeric Mip proteins, has a V-like shape. Further, it dimerizes using 40 amino acid residues including Ile 9, Ile 17, Ile 42, and Ile 65. All of the above Ile residues except Ile 9 are partly conserved in the Mip-like proteins. To confirm the roles of the partly conserved Ile residues, three FKBP22 mutants, constructed by substituting them with an Ala residue, were studied as well. The results together indicate that Ile 65 has little role in maintaining the dimeric state or enzymatic activity of FKBP22. Conversely, both Ile 17 and Ile 42 are essential for preserving the structure, enzymatic activity, and dimerization ability of FKBP22. Ile 42 in particular looks more essential to FKBP22. However, none of these two Ile residues is required for binding the cognate inhibitor. Additional computational studies also indicated the change of V-shape and the dimeric state of FKBP22 due to the Ala substitution at position 42. The ways Ile 17 and Ile 42 protect the structure, function, and dimerization of FKBP22 have been discussed at length.Communicated by Ramaswamy H. Sarma.
FKBP22 是一种人工合成的肽基脯氨酰顺反异构酶,与 Mip 样毒力因子具有显著的同源性。虽然该酶的 C 末端结构域用于执行催化功能和结合抑制剂,但 N 末端结构域用于其二聚化。为了准确确定 FKBP22 二聚化的潜在因素,我们使用合适的模板构建了其结构模型,并仔细检查了该模型。数据表明,与二聚化 Mip 蛋白类似,二聚化 FKBP22 具有 V 形。此外,它使用包括 Ile9、Ile17、Ile42 和 Ile65 在内的 40 个氨基酸残基进行二聚化。除 Ile9 外,上述所有 Ile 残基在 Mip 样蛋白中部分保守。为了确认部分保守 Ile 残基的作用,我们还研究了三个用 Ala 残基取代这些残基构建的 FKBP22 突变体。结果表明,Ile65 对维持 FKBP22 的二聚状态或酶活性几乎没有作用。相反,Ile17 和 Ile42 对于维持 FKBP22 的结构、酶活性和二聚化能力都是必需的。特别是 Ile42 对 FKBP22 更为重要。然而,这些 Ile 残基都不是与 FKBP22 结合的同源抑制剂所必需的。额外的计算研究还表明,由于第 42 位的 Ala 取代,FKBP22 的 V 形和二聚化状态发生了变化。详细讨论了 Ile17 和 Ile42 保护 FKBP22 结构、功能和二聚化的方式。由 Ramaswamy H. Sarma 传达。