Abstract
AbstractLowe syndrome (LS) is an X-linked recessive genetic disorder characterized by renal dysfunction, neurodevelopmental defects, and cataract. The affected gene,OCRLencodes for a polyphosphoinositide 5-phosphatase. OCRL is localized to multiple sub-cellular locations in the endolysosomal system and defects in these organelles have been described in human cells depleted of OCRL. However, the relationship of the endolysosomal defects in OCRL depleted cells to the altered physiology of kidney cells of LS patients has not been completely determined. Here we model the kidney phenotypes of LS using aDrosophilanephrocyte model. Using this model system, we demonstrate that OCRL plays a cell-autonomous role in nephrocyte function. Deletion of the only OCRL ortholog inDrosophila(dOCRL) leads to cell-autonomous defects in larval nephrocyte structure and function. Null mutants ofdOCRL(dOCRLKO) show defects in the endolysosomal system of larval nephrocytes that are associated with physiological defects in nephrocyte function. These defects could be rescued by reconstitution with a humanOCRLtransgene but not with a phosphatase dead version or a human LS patient derived mutation. Overall, this work provides a model system to understand the mechanisms by which the sub-cellular changes from loss of OCRL leads to defects in kidney function in human patients.
Publisher
Cold Spring Harbor Laboratory
Reference29 articles.
1. Macrophages in Drosophila embryos and L2 cells exhibit scavenger receptor-mediated endocytosis.
2. Ahmed P, H. , Singh, P. , Thakur, R. , Kumari, A. , Krishnan, H. , Philip, R. G. , Vasudevan, A. and Padinjat, R . (2021). Genomic sequencing of Lowe syndrome trios reveal a mechanism for the heterogeneity of neurodevelopmental phenotypes. bioRxiv 2021.06.22.449382.
3. The Lowe's oculocerebrorenal syndrome gene encodes a protein highly homologous to inositol polyphosphate-5-phosphatase
4. Phosphoinositide signalling in Drosophila;Biochim Biophys Acta Mol Cell Biol Lipids,2015
5. Regulation of PI4P levels by PI4KIIIα during G-protein coupled PLC signaling in Drosophila photoreceptors