The Rowett Institute, University of Aberdeen, Aberdeen, UK.
The Queen's Medical Research Institute, University of Edinburgh, Edinburgh, UK.
Mol Metab. 2018 Apr;10:55-65. doi: 10.1016/j.molmet.2018.01.019. Epub 2018 Jan 31.
Mutations to the BSCL2 gene disrupt the protein seipin and cause the most severe form of congenital generalised lipodystrophy (CGL). Affected individuals exhibit a near complete loss of white adipose tissue (WAT) and suffer from metabolic disease. Seipin is critical for adipocyte development in culture and mice with germline disruption to Bscl2 recapitulate the effects of BSCL2 disruption in humans. Here we examined whether loss of Bscl2 specifically in developing adipocytes in vivo is sufficient to prevent adipose tissue development and cause all features observed with congenital BSCL2 disruption.
We generated and characterised a novel mouse model of Bscl2 deficiency in developing adipocytes (Ad-B2) using the adipose-specific Adiponectin-Cre line.
We demonstrate that Ad-B2 mice display early onset lipodystrophy, in common with congenital Bscl2 null mice and CGL2 patients. However, glucose intolerance, insulin resistance, and severe hepatic steatosis are not apparent. Food intake and energy expenditure are unchanged, but Ad-B2 mice exhibit significantly altered substrate utilisation. We also find differential effects of seipin loss between specific adipose depots revealing new insights regarding their varied characteristics. When fed a high-fat diet, Ad-B2 mice entirely fail to expand adipose mass but remain glucose tolerant.
Our findings demonstrate that disruption of Bscl2 specifically in developing adipocytes is sufficient to cause the early-onset generalised lipodystrophy observed in patients with mutations in BSCL2. However, this significant reduction in adipose mass does not cause the overt metabolic dysfunction seen in Bscl2 knockout mice, even following a high-fat diet challenge.
BSCL2 基因突变会破坏 seipin 蛋白,导致最严重的先天性全身性脂肪营养不良(CGL)。受影响的个体表现出几乎完全丧失白色脂肪组织(WAT),并患有代谢疾病。Seipin 对培养中的脂肪细胞发育至关重要,而 Bscl2 种系缺失的小鼠重现了人类 BSCL2 缺失的影响。在这里,我们研究了体内发育中的脂肪细胞特异性缺失 Bscl2 是否足以防止脂肪组织发育并导致与先天性 BSCL2 缺失相关的所有特征。
我们使用脂肪特异性脂联素-Cre 系生成并表征了一种新型的发育中脂肪细胞 Bscl2 缺陷小鼠模型(Ad-B2)。
我们证明 Ad-B2 小鼠表现出与先天性 Bscl2 缺失小鼠和 CGL2 患者共同的早期脂肪营养不良。然而,葡萄糖耐量受损、胰岛素抵抗和严重的肝脂肪变性并不明显。食物摄入和能量消耗没有改变,但 Ad-B2 小鼠表现出明显改变的底物利用。我们还发现 seipin 缺失在特定脂肪组织中的不同影响,揭示了它们不同特征的新见解。当喂食高脂肪饮食时,Ad-B2 小鼠完全无法扩大脂肪量,但仍保持葡萄糖耐量。
我们的发现表明,发育中的脂肪细胞特异性破坏 Bscl2 足以引起在 BSCL2 突变患者中观察到的早期全身性脂肪营养不良。然而,这种脂肪量的显著减少不会导致 Bscl2 敲除小鼠在高脂肪饮食挑战后出现明显的代谢功能障碍。