Protein Analysis Group, Department of Pharmacy, University of Copenhagen, 2100, Copenhagen O, Denmark.
Orphazyme A/S, Copenhagen, Denmark.
Commun Biol. 2021 Dec 7;4(1):1369. doi: 10.1038/s42003-021-02892-7.
The binding of the major stress-inducible human 70-kDa heat shock protein (Hsp70) to the anionic phospholipid bis-(monoacylglycero)-phosphate (BMP) in the lysosomal membrane is crucial for its impact on cellular pathology in lysosomal storage disorders. However, the conformational features of this protein-lipid complex remain unclear. Here, we apply hydrogen-deuterium exchange mass spectrometry (HDX-MS) to describe the dynamics of the full-length Hsp70 in the cytosol and its conformational changes upon translocation into lysosomes. Using wild-type and W90F mutant proteins, we also map and discriminate the interaction of Hsp70 with BMP and other lipid components of the lysosomal membrane. We identify the N-terminal of the nucleotide binding domain (residues 87-118) as the primary orchestrator of BMP interaction. We show that the conformation of this domain is significantly reorganized in the W90F mutant, explaining its inability to stabilize lysosomal membranes. Overall, our results reveal important new molecular details of the protective effect of Hsp70 in lysosomal storage diseases, which, in turn, could guide future drug development.
主要的应激诱导人 70kDa 热休克蛋白(Hsp70)与溶酶体膜中阴离子磷脂双(单酰基甘油)磷酸(BMP)的结合对于其对溶酶体储存障碍中细胞病理学的影响至关重要。然而,这种蛋白质-脂质复合物的构象特征仍不清楚。在这里,我们应用氘氢交换质谱(HDX-MS)来描述全长 Hsp70 在细胞质中的动力学及其在转位到溶酶体时的构象变化。使用野生型和 W90F 突变蛋白,我们还绘制并区分了 Hsp70 与 BMP 以及溶酶体膜其他脂质成分的相互作用。我们确定核苷酸结合域的 N 端(残基 87-118)是 BMP 相互作用的主要协调器。我们表明,该结构域的构象在 W90F 突变体中发生了显著重组,解释了其不能稳定溶酶体膜的原因。总的来说,我们的结果揭示了 Hsp70 在溶酶体储存疾病中保护作用的重要新分子细节,这反过来又可以指导未来的药物开发。