Instituto Biofisika (UPV/EHU, CSIC), University of Basque Country, Leioa, Spain.
Department of Biochemistry and Molecular Biology, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Leioa, Spain.
Protein Sci. 2024 Aug;33(8):e5105. doi: 10.1002/pro.5105.
The Hsp70 system is essential for maintaining protein homeostasis and comprises a central Hsp70 and two accessory proteins that belong to the J-domain protein (JDP) and nucleotide exchange factor families. Posttranslational modifications offer a means to tune the activity of the system. We explore how phosphorylation of specific residues of the J-domain of DNAJA2, a class A JDP, regulates Hsc70 activity using biochemical and structural approaches. Among these residues, we find that pseudophosphorylation of Y10 and S51 enhances the holding/folding balance of the Hsp70 system, reducing cochaperone collaboration with Hsc70 while maintaining the holding capacity. Truly phosphorylated J domains corroborate phosphomimetic variant effects. Notably, distinct mechanisms underlie functional impacts of these DNAJA2 variants. Pseudophosphorylation of Y10 induces partial disordering of the J domain, whereas the S51E substitution weakens essential DNAJA2-Hsc70 interactions without a large structural reorganization of the protein. S51 phosphorylation might be class-specific, as all cytosolic class A human JDPs harbor a phosphorylatable residue at this position.
Hsp70 系统对于维持蛋白质平衡至关重要,它由一个中心 Hsp70 和两个辅助蛋白组成,这两个辅助蛋白属于 J 域蛋白 (JDP) 和核苷酸交换因子家族。翻译后修饰提供了一种调节系统活性的方法。我们使用生化和结构方法探讨了 DNAJA2(A 类 JDP)J 域特定残基的磷酸化如何调节 Hsc70 活性。在这些残基中,我们发现 Y10 和 S51 的拟磷酸化增强了 Hsp70 系统的保持/折叠平衡,减少了与 Hsc70 的共伴侣协作,同时保持了保持能力。真正磷酸化的 J 域证实了磷酸模拟变体的效果。值得注意的是,这些 DNAJA2 变体的功能影响的基础是不同的机制。Y10 的拟磷酸化诱导 J 域的部分去折叠,而 S51E 取代在没有蛋白质大结构重组的情况下削弱了必需的 DNAJA2-Hsc70 相互作用。S51 磷酸化可能是特定于类别的,因为所有细胞质 A 类人 JDP 在此位置都有一个可磷酸化的残基。