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P A Jänne, S F Suchy, D Bernard, M MacDonald, J Crawley, A Grinberg, A Wynshaw-Boris, H Westphal, R L Nussbaum
J Clin Invest. 1998;
101(10):2042
doi:10.1172/JCI2414
Abstract |
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T
he oculocerebrorenal syndrome of Lowe (OCRL) is an X-linked human genetic disorder characterized by mental retardation, congenital cataracts, and renal tubular dysfunction. The Lowe syndrome gene, OCRL1, encodes a phosphatidylinositol 4,5-bisphosphate 5-phosphatase in the Golgi complex. The pathogenesis of Lowe syndrome due to deficiency of a phosphatidylinositol 4,5-bisphosphate 5-phosphatase in the Golgi complex is unknown. We have used targeted disruption in embryonic stem cells to make mice deficient in Ocrl1, the mouse homologue for OCRL1, as an animal model for the disease. Surprisingly, mice deficient in Ocrl1 do not develop the congenital cataracts, renal Fanconi syndrome, or neurological abnormalities seen in the human disorder. We hypothesized that Ocrl1 deficiency is complemented in mice by inositol polyphosphate 5-phosphatase (Inpp5b), an autosomal gene that encodes a phosphatidylinositol bisphosphate 5-phosphatase highly homologous to Ocrl1. We created mice deficient in Inpp5b; the mice were viable and fertile without phenotype except for testicular degeneration in males beginning after sexual maturation. We crossed mice deficient in Ocrl1 to mice deficient in Inpp5b. No liveborn mice or embryos lacking both enzymes were found, demonstrating that Ocrl1 and Inpp5b have overlapping functions in mice and suggesting that the lack of phenotype in Ocrl1-deficient mice may be due to compensating Inpp5b function.
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(37)
| Title and authors |
Publication |
Year |
The Lowe syndrome protein OCRL1 is involved in primary cilia assembly
B. G. Coon, V. Hernandez, K. Madhivanan, D. Mukherjee, C. B. Hanna, I. Barinaga-Rementeria Ramirez, M. Lowe, P. L. Beales, R. C. Aguilar
|
Human Molecular Genetics
|
2012 |
Inositol 5-phosphatases: insights from the Lowe syndrome protein OCRL
Michelle Pirruccello, Pietro De Camilli
|
Trends in Biochemical Sciences
|
2012 |
Novel techniques and newer markers for the evaluation of “proximal tubular dysfunction”
Michael Ludwig, Sidharth K. Sethi
|
Int Urol Nephrol
|
2011 |
Recognition of the F&H motif by the Lowe syndrome protein OCRL
Michelle Pirruccello, Laura E Swan, Ewa Folta-Stogniew, Pietro De Camilli
|
Nat Struct Mol Biol
|
2011 |
A structural basis for Lowe syndrome caused by mutations in the Rab-binding domain of OCRL1
Xiaomin Hou, Nina Hagemann, Stefan Schoebel, Wulf Blankenfeldt, Roger S Goody, Kai S Erdmann, Aymelt Itzen
|
EMBO J
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2011 |
Dynamic control of neuroexocytosis by phosphoinositides in health and disease
P.J. Wen, S.L. Osborne, F.A. Meunier
|
Progress in Lipid Research
|
2011 |
Clinical and laboratory features of Macedonian children with OCRL mutations
Velibor Tasic, Vladimir J. Lozanovski, Petar Korneti, Nadica Ristoska-Bojkovska, Vesna Sabolic-Avramovska, Zoran Gucev, Michael Ludwig
|
Pediatr Nephrol
|
2011 |
The inositol Inpp5k 5-phosphatase affects osmoregulation through the vasopressin-aquaporin 2 pathway in the collecting system
Eileen Pernot, Sara Terryn, Siew Chiat Cheong, Nicolas Markadieu, Sylvie Janas, Marianne Blockmans, Monique Jacoby, Valérie Pouillon, Stéphanie Gayral, Bernard C. Rossier
|
Pflugers Arch - Eur J Physiol
|
2011 |
Impaired neural development in a zebrafish model for Lowe syndrome
I. B.-R. Ramirez, G. Pietka, D. R. Jones, N. Divecha, A. Alia, S. C. Baraban, A. F. L. Hurlstone, M. Lowe
|
Human Molecular Genetics
|
2011 |
X-inactivation analysis of embryonic lethality in Ocrl wt/−;Inpp5b −/− mice
David J. Bernard, Robert L. Nussbaum
|
Mamm Genome
|
2010 |
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