Institute of Biochemistry, Christian-Albrechts-University Kiel, Kiel, Germany.
Institute for Biochemistry and Molecular Biology, Rheinische-Friedrich-Wilhelms-University, Bonn, Germany.
Elife. 2019 Oct 29;8:e50025. doi: 10.7554/eLife.50025.
Lysosomes are major sites for intracellular, acidic hydrolase-mediated proteolysis and cellular degradation. The export of low-molecular-weight catabolic end-products is facilitated by polytopic transmembrane proteins mediating secondary active or passive transport. A number of these lysosomal transporters, however, remain enigmatic. We present a detailed analysis of MFSD1, a hitherto uncharacterized lysosomal family member of the major facilitator superfamily. MFSD1 is not N-glycosylated. It contains a dileucine-based sorting motif needed for its transport to lysosomes. knockout mice develop splenomegaly and severe liver disease. Proteomics of isolated lysosomes from knockout mice revealed GLMP as a critical accessory subunit for MFSD1. MFSD1 and GLMP physically interact. GLMP is essential for the maintenance of normal levels of MFSD1 in lysosomes and vice versa. knockout mice mimic the phenotype of knockout mice. Our data reveal a tightly linked MFSD1/GLMP lysosomal membrane protein transporter complex.
溶酶体是细胞内酸性水解酶介导的蛋白水解和细胞降解的主要场所。通过介导次级主动或被动转运的多跨膜蛋白,促进低分子量代谢终产物的输出。然而,这些溶酶体转运蛋白中有许多仍然是谜。我们对 MFSD1 进行了详细分析,MFSD1 是主要易化子超家族中一个尚未被描述的溶酶体家族成员。MFSD1 不进行 N-糖基化。它包含一个双亮氨酸基分拣基序,该基序是其运输到溶酶体所必需的。MFSD1 敲除小鼠会发生脾肿大和严重的肝脏疾病。从 MFSD1 敲除小鼠分离的溶酶体的蛋白质组学分析显示 GLMP 是 MFSD1 的关键辅助亚基。MFSD1 和 GLMP 物理相互作用。GLMP 对于维持 MFSD1 在溶酶体中的正常水平是必需的,反之亦然。MFSD1 敲除小鼠模拟了 MFSD1 敲除小鼠的表型。我们的数据揭示了一个紧密连接的 MFSD1/GLMP 溶酶体膜蛋白转运复合物。