Divoux Adeline, Karastergiou Kalypso, Xie Hui, Guo Weimen, Perera Ranjan J, Fried Susan K, Smith Steven R
Translational Research Institute for Metabolism and Diabetes, Florida Hospital, Sanford/Burnham Medical Research Institute, Orlando, Florida, USA; Diabetes and Obesity Research Center, Sanford/Burnham Medical Research Institute at Lake Nona, Orlando, Florida, USA.
Obesity (Silver Spring). 2014 Aug;22(8):1781-5. doi: 10.1002/oby.20793. Epub 2014 May 23.
Peripheral lower body fat is associated with lower cardiometabolic risk. Physiological differences in gluteal compared with abdominal subcutaneous (sc) adipocyte functions are known but the molecular basis for depot differences in adipocyte function is poorly understood. Our goal is to identify novel gene regulatory pathways that underlie the heterogeneity of human fat distribution.
Abdominal and gluteal adipose tissue aspirates obtained from 35 subjects (age = 30 ± 1.6 years; BMI = 27.3 ± 1.3 kg/m(2) ) were analyzed using Illumina microarrays and confirmed by RT-PCR. The HOTAIR gene was stably transfected into primary cultured human abdominal sc preadipocytes using a lentivirus and effects on adipogenic differentiation were analyzed.
A long noncoding RNA, HOTAIR that was expressed in gluteal but not in Abd sc adipose tissue was identified. This difference was retained throughout in vitro differentiation and was maximal at day 4. Ectopic expression of HOTAIR in abdominal preadipocytes produced an increase in differentiation as reflected by a higher percentage of differentiated cells, and increased expression of key adipogenic genes including PPARγ and LPL.
HOTAIR is expressed in gluteal adipose and may regulate key processes in adipocyte differentiation. The role of this lncRNA in determining the metabolic properties of gluteal compared with abdominal adipocytes merits further study.
下肢外周脂肪与较低的心脏代谢风险相关。已知臀区与腹部皮下脂肪细胞功能存在生理差异,但对于脂肪细胞功能中不同储存部位差异的分子基础了解甚少。我们的目标是确定构成人类脂肪分布异质性基础的新基因调控途径。
使用Illumina微阵列分析从35名受试者(年龄=30±1.6岁;BMI=27.3±1.3kg/m²)获取的腹部和臀区脂肪组织抽吸物,并通过逆转录聚合酶链反应进行确认。使用慢病毒将HOTAIR基因稳定转染至原代培养的人腹部皮下前脂肪细胞中,并分析其对脂肪生成分化的影响。
鉴定出一种长链非编码RNA,即HOTAIR,其在臀区脂肪组织中表达而不在腹部皮下脂肪组织中表达。这种差异在整个体外分化过程中持续存在,在第4天达到最大。HOTAIR在腹部前脂肪细胞中的异位表达导致分化增加,表现为分化细胞百分比更高,以及关键脂肪生成基因(包括PPARγ和LPL)的表达增加。
HOTAIR在臀区脂肪中表达,可能调节脂肪细胞分化的关键过程。与腹部脂肪细胞相比,这种长链非编码RNA在决定臀区脂肪代谢特性中的作用值得进一步研究。