Matos Carolina O, Pinheiro Glaucia M S, Caruso Icaro P, Amorim Gisele C, Almeida Fabio C L, Ramos Carlos H I
Institute of Chemistry, University of Campinas UNICAMP, Campinas 13083-862, SP, Brazil.
Multiuser Center for Biomolecular Innovation (CMIB), Department of Physics, São Paulo State University (UNESP), São Jose do Rio Preto 01049-010, SP, Brazil.
Molecules. 2024 Dec 24;30(1):11. doi: 10.3390/molecules30010011.
HSP70 chaperones play pivotal roles in facilitating protein folding, refolding, and disaggregation through their binding and releasing activities. This intricate process is further supported by J-domain proteins (JDPs), also known as DNAJs or HSP40s, which can be categorized into classes A and B. In yeast, these classes are represented by Ydj1 and Sis1, respectively. While both classes stimulate the ATPase activity of Ssa1 (yeast HSP70) through the J-domain, only class B JDPs possess the unique ability to efficiently stimulate Ssa1 in disaggregation processes. The C-terminal EEVD motif of HSP70 plays a crucial role in mediating these interactions by connecting with both client proteins and JDPs. However, the removal of the EEVD motif disrupts the capacity of HSP70 to associate with class B JDPs, and the intricacies of the interaction between these two proteins remain incompletely understood. We employed NMR spectroscopy to investigate the structure and dynamics of the class B J domain protein (JDP) of (Sis1) complexed with an EEVD peptide of Ssa1. Our study is based on the extraordinary 70.5% residue assignment of the full-length (352 residues long) Sis1. Our findings revealed that EEVD binds to two distinct sites within the C-terminal domain I (CTDI) of Sis1, to the J domain and to the GF-rich loop located between the J domain and α-helix 6 (a structure identified by this work). We propose that the interaction between EEVD and Sis1 facilitates the dissociation of α-helix 6, promoting a conformational state that is more favorable for interaction with Ssa1. We also employed α-synuclein as a substrate to investigate the competitive nature between EEVD and the client protein. Our experimental findings provide evidence supporting the interaction of EEVD with the client protein at multiple sites and essential insights into the mechanistic cycle of class B JDPs.
热休克蛋白70(HSP70)分子伴侣通过其结合和释放活性,在促进蛋白质折叠、重新折叠和解聚过程中发挥关键作用。这一复杂过程还得到J结构域蛋白(JDPs)的进一步支持,JDPs也被称为DNAJs或HSP40s,可分为A类和B类。在酵母中,这两类分别由Ydj1和Sis1代表。虽然这两类蛋白都通过J结构域刺激Ssa1(酵母HSP70)的ATP酶活性,但只有B类JDPs具有在解聚过程中有效刺激Ssa1的独特能力。HSP70的C末端EEVD基序通过与客户蛋白和JDPs连接,在介导这些相互作用中起关键作用。然而,去除EEVD基序会破坏HSP70与B类JDPs结合的能力,这两种蛋白之间相互作用的复杂性仍未完全了解。我们采用核磁共振光谱法研究与Ssa1的EEVD肽复合的(Sis1)B类J结构域蛋白(JDP)的结构和动力学。我们的研究基于全长(352个残基)Sis1的70.5%残基的非凡归属。我们的研究结果表明,EEVD与Sis1的C末端结构域I(CTDI)内的两个不同位点、J结构域以及位于J结构域和α-螺旋6之间的富含GF的环结合(这一结构是本研究确定的)。我们提出,EEVD与Sis1之间的相互作用促进了α-螺旋6的解离,促进了一种更有利于与Ssa1相互作用的构象状态。我们还采用α-突触核蛋白作为底物,研究EEVD与客户蛋白之间的竞争性质。我们的实验结果提供了支持EEVD与客户蛋白在多个位点相互作用的证据,并对B类JDPs的机制循环有了重要见解。