Institute of Biochemistry and Molecular Biology, Laboratory for Structural Biology of Infection and Inflammation, University of Hamburg, c/o DESY, Build. 22a, Notkestraße 85, 22607, Hamburg, Germany.
Center for Free-Electron Laser Science CFEL, DESY, Notkestraße 85, 22607, Hamburg, Germany.
Sci Rep. 2024 Jan 31;14(1):2572. doi: 10.1038/s41598-024-51787-0.
Bacterial caseinolytic protease P subunit (ClpP) is important and vital for cell survival and infectivity. Recent publications describe and discuss the complex structure-function relationship of ClpP and its processive activity mediated by 14 catalytic sites. Even so, there are several aspects yet to be further elucidated, such as the paradoxical allosteric modulation of ClpP by peptidomimetic boronates. These compounds bind to all catalytic sites, and in specific conditions, they stimulate a dysregulated degradation of peptides and globular proteins, instead of inhibiting the enzymatic activity, as expected for serine proteases in general. Aiming to explore and explain this paradoxical effect, we solved and refined the crystal structure of native ClpP from Staphylococcus epidermidis (Se), an opportunistic pathogen involved in nosocomial infections, as well as ClpP in complex with ixazomib at 1.90 Å and 2.33 Å resolution, respectively. The interpretation of the crystal structures, in combination with complementary biochemical and biophysical data, shed light on how ixazomib affects the ClpP conformational state and activity. Moreover, SEC-SAXS and DLS measurements show, for the first time, that a peptidomimetic boronate compound also induces the assembly of the tetradecameric structure from isolated homomeric heptameric rings of a gram-positive organism.
细菌酪蛋白碱性蛋白酶 P 亚基(ClpP)对细胞存活和感染力很重要。最近的出版物描述和讨论了 ClpP 的复杂结构-功能关系及其由 14 个催化位点介导的连续活性。即便如此,仍有几个方面有待进一步阐明,例如 ClpP 被肽模拟硼酸酯的矛盾变构调节。这些化合物与所有的催化位点结合,在特定条件下,它们刺激肽和球状蛋白的失调降解,而不是像一般的丝氨酸蛋白酶那样抑制酶活性。为了探索和解释这种矛盾的效应,我们分别解析并细化了来自表皮葡萄球菌(一种参与医院感染的机会性病原体)的天然 ClpP 以及与 ixazomib 复合的 ClpP 的晶体结构,分辨率分别为 1.90Å 和 2.33Å。晶体结构的解释,结合互补的生化和生物物理数据,阐明了 ixazomib 如何影响 ClpP 的构象状态和活性。此外,SEC-SAXS 和 DLS 测量首次表明,肽模拟硼酸酯化合物也能诱导来自革兰氏阳性菌的分离同源七聚体环的十四聚体结构组装。