SNX14 mutations affect endoplasmic reticulum-associated neutral lipid metabolism in autosomal recessive spinocerebellar ataxia 20. 2018

Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
Genetics and Genomic Medicine, UCL Great Ormond Street Institute of Child Health, London WC1N 1EH, UK.

Mutations in SNX14 cause the autosomal recessive cerebellar ataxia 20 (SCAR20). Mutations generally result in loss of protein although several coding region deletions have also been reported. Patient-derived fibroblasts show disrupted autophagy, but the precise function of SNX14 is unknown. The yeast homolog, Mdm1, functions in endoplasmic reticulum (ER)-lysosome/vacuole inter-organelle tethering, but functional conservation in mammals is still required. Here, we show that loss of SNX14 alters but does not block autophagic flux. In addition, we find that SNX14 is an ER-associated protein that functions in neutral lipid homeostasis and inter-organelle crosstalk. SNX14 requires its N-terminal transmembrane helices for ER localization, while the Phox homology (PX) domain is dispensable for subcellular localization. Both SNX14-mutant fibroblasts and SNX14KO HEK293 cells accumulate aberrant cytoplasmic vacuoles, suggesting defects in endolysosomal homeostasis. However, ER-late endosome/lysosome contact sites are maintained in SNX14KO cells, indicating that it is not a prerequisite for ER-endolysosomal tethering. Further investigation of SNX14- deficiency indicates general defects in neutral lipid metabolism. SNX14KO cells display distinct perinuclear accumulation of filipin in LAMP1-positive lysosomal structures indicating cholesterol accumulation. Consistent with this, SNX14KO cells display a slight but detectable decrease in cholesterol ester levels, which is exacerbated with U18666A. Finally, SNX14 associates with ER-derived lipid droplets (LD) following oleate treatment, indicating a role in ER-LD crosstalk. We therefore identify an important role for SNX14 in neutral lipid homeostasis between the ER, lysosomes and LDs that may provide an early intervention target to alleviate the clinical symptoms of SCAR20.

UI MeSH Term Description Entries
D007381 Intermediate Filament Proteins Filaments 7-11 nm in diameter found in the cytoplasm of all cells. Many specific proteins belong to this group, e.g., desmin, vimentin, prekeratin, decamin, skeletin, neurofilin, neurofilament protein, and glial fibrillary acid protein. Fibroblast Intermediate Filament Proteins,Filament Proteins, Intermediate,Proteins, Intermediate Filament
D008247 Lysosomes A class of morphologically heterogeneous cytoplasmic particles in animal and plant tissues characterized by their content of hydrolytic enzymes and the structure-linked latency of these enzymes. The intracellular functions of lysosomes depend on their lytic potential. The single unit membrane of the lysosome acts as a barrier between the enzymes enclosed in the lysosome and the external substrate. The activity of the enzymes contained in lysosomes is limited or nil unless the vesicle in which they are enclosed is ruptured or undergoes MEMBRANE FUSION. (From Rieger et al., Glossary of Genetics: Classical and Molecular, 5th ed). Autolysosome,Autolysosomes,Lysosome
D009154 Mutation Any detectable and heritable change in the genetic material that causes a change in the GENOTYPE and which is transmitted to daughter cells and to succeeding generations. Mutations
D011992 Endosomes Cytoplasmic vesicles formed when COATED VESICLES shed their CLATHRIN coat. Endosomes internalize macromolecules bound by receptors on the cell surface. Receptosomes,Endosome,Receptosome
D004721 Endoplasmic Reticulum A system of cisternae in the CYTOPLASM of many cells. In places the endoplasmic reticulum is continuous with the plasma membrane (CELL MEMBRANE) or outer membrane of the nuclear envelope. If the outer surfaces of the endoplasmic reticulum membranes are coated with ribosomes, the endoplasmic reticulum is said to be rough-surfaced (ENDOPLASMIC RETICULUM, ROUGH); otherwise it is said to be smooth-surfaced (ENDOPLASMIC RETICULUM, SMOOTH). (King & Stansfield, A Dictionary of Genetics, 4th ed) Ergastoplasm,Reticulum, Endoplasmic
D006706 Homeostasis The processes whereby the internal environment of an organism tends to remain balanced and stable. Autoregulation
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001343 Autophagy The segregation and degradation of various cytoplasmic constituents via engulfment by MULTIVESICULAR BODIES; VACUOLES; or AUTOPHAGOSOMES and their digestion by LYSOSOMES. It plays an important role in BIOLOGICAL METAMORPHOSIS and in the removal of bone by OSTEOCLASTS. Defective autophagy is associated with various diseases, including NEURODEGENERATIVE DISEASES and cancer. Autophagocytosis,ER-Phagy,Lipophagy,Nucleophagy,Reticulophagy,Ribophagy,Autophagy, Cellular,Cellular Autophagy,ER Phagy
D012441 Saccharomyces cerevisiae A species of the genus SACCHAROMYCES, family Saccharomycetaceae, order Saccharomycetales, known as "baker's" or "brewer's" yeast. The dried form is used as a dietary supplement. Baker's Yeast,Brewer's Yeast,Candida robusta,S. cerevisiae,Saccharomyces capensis,Saccharomyces italicus,Saccharomyces oviformis,Saccharomyces uvarum var. melibiosus,Yeast, Baker's,Yeast, Brewer's,Baker Yeast,S cerevisiae,Baker's Yeasts,Yeast, Baker
D050356 Lipid Metabolism Physiological processes in biosynthesis (anabolism) and degradation (catabolism) of LIPIDS. Metabolism, Lipid

Related Publications

Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
January 2024, Frontiers in genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
June 2022, American journal of medical genetics. Part A,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
January 2023, Frontiers in genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
January 2020, Frontiers in genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
November 2014, American journal of human genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
January 2012, Case reports in pediatrics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
December 2023, Journal of human genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
September 2021, Journal of the neurological sciences,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
February 2017, European journal of medical genetics,
Dale Bryant, and Yang Liu, and Sanchari Datta, and Hanaa Hariri, and Marian Seda, and Glenn Anderson, and Emma Peskett, and Charalambos Demetriou, and Sergio Sousa, and Dagan Jenkins, and Peter Clayton, and Maria Bitner-Glindzicz, and Gudrun E Moore, and W Mike Henne, and Philip Stanier
June 2020, International journal of molecular sciences,
Copied contents to your clipboard!