Title : Structure of the murine lysosomal multienzyme complex core - Gorelik_2021_Sci.Adv_7_eabf4155 |
Author(s) : Gorelik A , Illes K , Hasan SMN , Nagar B , Mazhab-Jafari MT |
Ref : Sci Adv , 7 : , 2021 |
Abstract :
The enzymes beta-galactosidase (GLB1) and neuraminidase 1 (NEU1; sialidase 1) participate in the degradation of glycoproteins and glycolipids in the lysosome. To remain active and stable, they associate with PPCA [protective protein cathepsin A (CTSA)] into a high-molecular weight lysosomal multienzyme complex (LMC), of which several forms exist. Genetic defects in these three proteins cause the lysosomal storage diseases GM1-gangliosidosis/mucopolysaccharidosis IV type B, sialidosis, and galactosialidosis, respectively. To better understand the interactions between these enzymes, we determined the three-dimensional structure of the murine LMC core. This 0.8-MDa complex is composed of three GLB1 dimers and three CTSA dimers, adopting a triangular architecture maintained through six copies of a unique GLB1-CTSA polar interface. Mutations in this contact surface that occur in GM1-gangliosidosis prevent formation of the LMC in vitro. These findings may facilitate development of therapies for lysosomal storage disorders. |
PubMedSearch : Gorelik_2021_Sci.Adv_7_eabf4155 |
PubMedID: 33980489 |
Gene_locus related to this paper: mouse-ppce |
Gene_locus | mouse-ppce |
Structure | 7KDV |
Gorelik A, Illes K, Hasan SMN, Nagar B, Mazhab-Jafari MT (2021)
Structure of the murine lysosomal multienzyme complex core
Sci Adv
7 :
Gorelik A, Illes K, Hasan SMN, Nagar B, Mazhab-Jafari MT (2021)
Sci Adv
7 :