Stearoyl-CoA desaturase-1 deficiency attenuates obesity and insulin resistance in leptin-resistant obese mice.

Makoto Miyazaki, Harini Sampath, Xueqing Liu, Matthew T Flowers, Kiki Chu, Agnieszka Dobrzyn, James M Ntambi
Author Information
  1. Makoto Miyazaki: Department of Biochemistry, University of Wisconsin-Madison, 433, Babcock Drive, Madison, WI 53706, USA.

Abstract

Obesity and adiposity greatly increase the risk for secondary conditions such as insulin resistance. Mice deficient in the enzyme stearoyl-CoA desaturase-1 (SCD1) are lean and protected from diet-induced obesity and insulin resistance. In order to determine the effect of SCD1 deficiency on various mouse models of obesity, we introduced a global deletion of the Scd1 gene into leptin-deficient ob/ob mice, leptin-resistant Agouti (A(y)/a) mice, and high-fat diet-fed obese (DIO) mice. SCD1 deficiency lowered body weight, adiposity, hepatic lipid accumulation, and hepatic lipogenic gene expression in all three mouse models. However, glucose tolerance, insulin, and leptin sensitivity were improved by SCD1 deficiency only in A(y)/a and DIO mice, but not ob/ob mice. These data uncouple the effects of SCD1 deficiency on weight loss from those on insulin sensitivity and suggest a beneficial effect of SCD1 inhibition on insulin sensitivity in obese mice that express a functional leptin gene.

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Grants

  1. R01 DK062388/NIDDK NIH HHS
  2. R01 DK062388-07/NIDDK NIH HHS
  3. T32 DK007665/NIDDK NIH HHS
  4. NIDDK R0162388/PHS HHS

MeSH Term

Adiposity
Agouti Signaling Protein
Animals
Glucose Tolerance Test
Insulin
Insulin Resistance
Leptin
Mice
Mice, Mutant Strains
Obesity
Stearoyl-CoA Desaturase

Chemicals

Agouti Signaling Protein
Insulin
Leptin
a protein, mouse
Scd1 protein, mouse
Stearoyl-CoA Desaturase

Word Cloud

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