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Arohan Subramanya

Publications and source records attributed to Arohan Subramanya.

2 recordsLinked to original sources

WNK kinases influence TRPV4 channel function and localization.

TRPV4, a renally expressed nonselective cation channel of the transient receptor potential (TRP) family, is gated by hypotonicity. Kinases of the WNK family influence expression and function of the thiazide-sensitive Na+-Cl- cotransporter, and monogenic human hypertension has been linked to mutations in the gene coding for WNK4. Along with TRPV4, WNK isoforms are highly expressed in the distal nephron. We show here that coexpression of WNK4 downregulates TRPV4 function in human embryonic kidney (HEK-293) cells and that this effect is mediated via decreased cell surface expression of TRPV4; total abundance of TRPV4 in whole cell lysates is unaffected. The effect of the related kinase WNK1 on TRPV4 function and surface expression was similar to that of WNK4. Disease-causing point mutations in WNK4 abrogate, but do not eliminate, the inhibitory effect on TRPV4 function. In contrast to wild-type WNK4, a kinase-dead WNK4 point mutant failed to influence TRPV4 trafficking; however, deletion of the entire WNK4 kinase domain did not blunt the effect of WNK4 on localization of TRPV4. Deletion of the extreme COOH-terminal putative coiled-coil domain of WNK4 abolished its effect. In immunoprecipitation experiments, we were unable to detect direct interaction between TRPV4 and either WNK kinase. In aggregate, these data indicate that TRPV4 is functionally regulated by WNK family kinases at the level of cell surface expression. Because TRPV4 and WNK kinases are coexpressed in the distal nephron in vivo and because there is a tendency toward hypercalcemia in TRPV4-/- mice, we speculate that this pathway may impact systemic Ca2+ balance. In addition, because WNK kinases and TRPV4 are activated by anisotonicity, they may comprise elements of an osmosensing or osmotically responsive signal transduction cascade in the distal nephron.

Animals↗

Steroid-responsive idiopathic glomerular capillary endotheliosis: case report and literature review.

Glomerular capillary endotheliosis is a lesion of endothelial cell injury. Morphological characteristics are endothelial swelling with glomerular hypertrophy and a reduction in capillary lumen size. This lesion commonly is found in patients with thrombotic microangiopathy, but similar histopathologic characteristics have been reported in patients with other diseases. A previously healthy 39-year-old woman presented with progressive lower-extremity swelling and arthralgias for 1 week. She had no other symptoms and denied prior illness. Her examination was remarkable for hypertension and pitting edema. Urine showed dysmorphic red blood cells and proteinuria. Serum creatinine level increased from 1.1 to 2.0 mg/dL (97 to 177 micromol/L) during several weeks. She did not meet criteria for systemic lupus erythematosus. Other test results included a negative pregnancy test and normal complement levels. Additional workup was negative for other causes of glomerular capillary endotheliosis. She underwent 2 renal biopsies. The first showed marked endothelial cell swelling, and the second biopsy 2 months later showed disease progression. Both were consistent with glomerular capillary endotheliosis. Proteinuria and serum creatinine level elevation responded to methylprednisolone therapy within 1 week, recurred after steroid doses were tapered, and responded again after restarting steroid therapy with monthly cyclophosphamide infusions. The differential diagnosis for glomerular capillary endotheliosis is limited. Various causes have been implicated, such as dysregulation of vascular endothelial growth factor, abnormal collagen production, and endothelial abnormalities. We did not identify prior cases of idiopathic glomerular capillary endotheliosis in the literature. Idiopathic glomerular capillary endotheliosis may be a newly recognized entity potentially responsive to steroid and cytotoxic regimens.

Adult↗