Relative Adipose Tissue Failure in Alström Syndrome Drives Obesity-Induced Insulin Resistance.

Geberhiwot, Tarekegn; Baig, Shanat; Obringer, Cathy; Girard, Dorothée; Dawson, Charlotte; Manolopoulos, Konstantinos; Messaddeq, Nadia; Bel Lassen, Pierre et al. · Diabetes · 2021

basic_science · Level V

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Abstract

Obesity is a major risk factor for insulin resistance (IR) and its attendant complications. The pathogenic mechanisms linking them remain poorly understood, partly due to a lack of intermediary monogenic human phenotypes. Here, we report on a monogenic form of IR-prone obesity, Alström syndrome (ALMS). Twenty-three subjects with monogenic or polygenic obesity underwent hyperinsulinemic-euglycemic clamping with concomitant adipose tissue (AT) microdialysis and an in-depth analysis of subcutaneous AT histology. We have shown a relative AT failure in a monogenic obese cohort, a finding supported by observations in a novel conditional mouse model (<i>Alms</i> <sup><i>flin/flin</i></sup> ) and ALMS1-silenced human primary adipocytes, whereas selective reactivation of ALMS1 gene in AT of an ALMS conditional knockdown mouse model (<i>Alms</i> <sup><i>flin/flin</i></sup> <i>; Adipo-Cre</i> <sup><i>+/-</i></sup> ) restores systemic insulin sensitivity and glucose tolerance. Hence, we show for the first time the relative AT failure in human obese cohorts to be a major determinant of accelerated IR without evidence of lipodystrophy. These new insights into adipocyte-driven IR may assist development of AT-targeted therapeutic strategies for diabetes.

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