4.7 Article Proceedings Paper

Allelic Depletion of grem1 Attenuates Diabetic Kidney Disease

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DIABETES
卷 58, 期 7, 页码 1641-1650

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AMER DIABETES ASSOC
DOI: 10.2337/db08-1365

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  1. NCI NIH HHS [CA68485, P30 CA068485] Funding Source: Medline
  2. NIDDK NIH HHS [DK59637, P30 DK058404, DK58404, DK20539, U24 DK059637] Funding Source: Medline

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OBJECTIVE-Gremlin (grem1) is an antagonist of the bone morphogenetic protein family that plays a key role in limb bud development and kidney formation. There is a growing appreciation that altered grem1 expression may regulate the homeo-static constraints on damage responses in diseases such as diabetic nephropathy. RESEARCH DESIGN AND METHODS-Here we explored whether knockout mice heterozygous for grem1 gene deletion (grem1(+/-)) exhibit protection from the progression of diabetic kidney disease in a streptozotocin-induced model of type 1 diabetes. RESULTS-A marked elevation in grem1 expression was detected in the kidneys and particularly in kidney tubules of diabetic wild-type mice compared with those of littermate controls. In contrast, diabetic grem1(+/-) mice displayed a significant attenuation in grem1 expression at 6 months of diabetes compared with that in age- and sex-matched wild-type controls. Whereas the onset and induction of diabetes were similar between grem1(+/-) and wild-type mice, several indicators of diabetes-associated kidney damage such as increased glomerular basement membrane thickening and microalbuminuria were attenuated in grem1(+/-) mice compared with those in wild-type controls. Markers of renal damage such as fibronectin and connective tissue growth factor were elevated in diabetic wildtype but not in grem1(+/-) kidneys. Levels of pSmad1/5/8 decreased in wild-type but not in grem1(+/-) diabetic kidneys, suggesting that bone morphogenetic protein signaling may be maintained in the absence of grem1. CONCLUSIONS-These data identify grem1 as a potential modifier of renal injury in the context of diabetic kidney disease. Diabetes 58:1641-1650, 2009

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