Li Haiyan, Heilbronn Leonie K, Hu Dachun, Poynten Ann M, Blackburn Miriam A, Shirkhedkar Deepali P, Kaplan Warren H, Kriketos Adamandia D, Ye Jiming, Chisholm Donald J
Diabetes and Obesity Research Program, Garvan Institute of Medical Research, Darlinghurst, NSW, Australia.
Obesity (Silver Spring). 2008 Feb;16(2):356-62. doi: 10.1038/oby.2007.76.
To examine differences in gene expression between visceral (VF) and subcutaneous fat (SF) to identity genes of potential importance in regulation of VF.
We compared gene expression (by DNA array and quantitative PCR (qPCR)) in paired VF and SF adipose biopsies from 36 subjects (age 54 +/- 15 years, 15 men/21 women) with varying degrees of adiposity and insulin resistance, in chow and fat fed mice (+/- rosiglitazone treatment) and in c-Cbl(-/-) mice. Gene expression was also examined in 3T3-L1 preadipocytes during differentiation.
A twofold difference or more was found between VF and SF in 1,343 probe sets, especially for genes related to development, cell differentiation, signal transduction, and receptor activity. Islet-1 (ISL1), a LIM-homeobox gene with important developmental and regulatory function in islet, neural, and cardiac tissue, not previously recognized in adipose tissue was virtually absent in SF but substantially expressed in VF. ISL1 expression correlated negatively with BMI (r = -0.37, P = 0.03), abdominal fat (by dual energy X-ray absorptiometry, r = -0.44, P = 0.02), and positively with circulating adiponectin (r = 0.33, P = 0.04). In diet-induced obese mice, expression was reduced in the presence or absence of rosiglitazone. Correspondingly, expression was increased in the c-Cbl(-/-) mouse, which is lean and insulin sensitive (IS). ISL1 expression was increased sevenfold in 3T3-L1 preadipocytes during early (day 1) differentiation and was reduced by day 2 differentiation.
An important developmental and regulatory gene ISL1 is uniquely expressed in VF, probably in the preadipocyte. Our data suggest that ISL1 may be regulated by adiposity and its role in metabolic regulation merits further study.
研究内脏脂肪(VF)和皮下脂肪(SF)之间的基因表达差异,以确定在VF调节中具有潜在重要性的基因。
我们比较了36名受试者(年龄54±15岁,15名男性/21名女性)的配对VF和SF脂肪活检组织中的基因表达(通过DNA阵列和定量PCR(qPCR)),这些受试者具有不同程度的肥胖和胰岛素抵抗,同时也比较了正常饮食和高脂喂养小鼠(±罗格列酮治疗)以及c-Cbl基因敲除小鼠(c-Cbl(-/-))的基因表达。还检测了3T3-L1前脂肪细胞在分化过程中的基因表达。
在1343个探针组中,VF和SF之间存在两倍或更大的差异,特别是与发育、细胞分化、信号转导和受体活性相关的基因。胰岛-1(ISL1)是一种LIM同源框基因,在胰岛、神经和心脏组织中具有重要的发育和调节功能,此前在脂肪组织中未被发现,在SF中几乎不存在,但在VF中大量表达。ISL1表达与体重指数(BMI)呈负相关(r = -0.37,P = 0.03),与腹部脂肪(通过双能X线吸收法测量,r = -0.44,P = 0.02)呈负相关,与循环脂联素呈正相关(r = 0.33,P = 0.04)。在饮食诱导的肥胖小鼠中,无论是否使用罗格列酮,ISL1表达均降低。相应地,在瘦且胰岛素敏感的c-Cbl(-/-)小鼠中,ISL1表达增加。在3T3-L1前脂肪细胞早期(第1天)分化过程中,ISL1表达增加了7倍,而在第2天分化时降低。
一个重要的发育和调节基因ISL1在VF中独特表达,可能在脂肪前体细胞中表达。我们的数据表明,ISL1可能受肥胖的调节,其在代谢调节中的作用值得进一步研究。