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首页> 外文期刊>Scientific reports. >Female adipose tissue-specific Bscl2 knockout mice develop only moderate metabolic dysfunction when housed at thermoneutrality and fed a high-fat diet
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Female adipose tissue-specific Bscl2 knockout mice develop only moderate metabolic dysfunction when housed at thermoneutrality and fed a high-fat diet

机译:雌性脂肪组织特异性Bscl2基因敲除小鼠以热中性饲养并进食高脂饮食时,仅会出现中度代谢功能障碍

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Mutations affecting the BSCL2 gene cause the most severe form of congenital generalised lipodystrophy. Affected individuals almost completely lack adipose tissue and suffer from severe diabetes and metabolic complications. Likewise, mice lacking Bscl2 in all tissues have dramatically reduced adipose mass, glucose intolerance and hyperinsulinaemia. However, male adipose tissue-specific Bscl2 knockout mice fail to develop the metabolic dysfunction observed in Bscl2 null mice and BSCL2 deficient patients, despite a similar generalised lack of adipose tissues. Clinical reports indicate gender differences frequently exist in cases of lipodystrophy, with female patients more adversely affected than male patients. We therefore generated and characterised female mice lacking Bscl2 specifically in adipose tissue (Ad-B2(?/?)). We show that female Ad-B2(?/?) mice also develop early-onset lipodystrophy when fed a chow diet and are maintained under standard housing conditions (21?°C) or thermoneutrality (30?°C). Despite this, female Ad-B2(?/?) mice fail to develop severe metabolic dysfunction. Only when female Ad-B2(?/?) mice are maintained at thermoneutrality and fed a high-fat diet do subtle alterations to metabolic homeostasis manifest. This is despite a striking inability to expand adipose mass. Our findings provide further evidence that loss of Bscl2 in non-adipose tissues may contribute to the severity of metabolic dysfunction in this condition.
机译:影响BSCL2基因的突变会导致最严重的先天性全身脂肪营养不良。受影响的个体几乎完全缺乏脂肪组织,并患有严重的糖尿病和代谢并发症。同样,在所有组织中均缺乏Bscl2的小鼠的脂肪量,葡萄糖耐受不良和高胰岛素血症显着减少。然而,尽管相似地普遍缺乏脂肪组织,但雄性脂肪组织特异性Bscl2基因敲除小鼠未能发展出在Bscl2缺失小鼠和BSCL2缺陷患者中观察到的代谢功能障碍。临床报告表明,在脂肪营养不良的病例中经常存在性别差异,女性患者比男性患者受到的影响更大。因此,我们生成并鉴定了在脂肪组织中特异性缺乏Bscl2的雌性小鼠(Ad-B2(α/β))。我们表明,雌性Ad-B2(α/β)小鼠在喂以低脂饮食时也会发展为早发性脂肪营养不良,并保持在标准的住房条件(21°C)或热中性(30°C)下。尽管如此,雌性Ad-B2(α/β)小鼠仍未发展出严重的代谢功能障碍。只有当雌性Ad-B2(β/β)小鼠保持热中性并进食高脂饮食时,代谢稳态的微妙变化才会显现出来。尽管没有明显的扩展脂肪量的能力。我们的发现提供了进一步的证据,表明在这种情况下,非脂肪组织中Bscl2的丢失可能导致代谢功能障碍的严重程度。

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