Perez-Diaz Sergio, Garcia-Rodriguez Beatriz, Gonzalez-Irazabal Yolanda, Valero Monica, Lagos-Lizan Javier, Arbones-Mainar Jose M
Adipocyte and Fat Biology Laboratory (AdipoFat), Unidad de Investigación Traslacional, Hospital Universitario Miguel Servet, Instituto Aragonés de Ciencias de la Salud (IACS), Instituto de Investigación Sanitaria (IIS) Aragón, Zaragoza, Spain.
Servicio de Bioquímica Clínica, Hospital Universitario Miguel Servet, Zaragoza, Spain.
Am J Physiol Cell Physiol. 2017 Jan 1;312(1):C83-C91. doi: 10.1152/ajpcell.00246.2016. Epub 2016 Nov 16.
Healthy expansion of human adipose tissue requires mesenchymal stem cells (hMSC) able to proliferate and differentiate into mature adipocytes. Hence, characterization of those factors that coordinate hMSC-to-adipocyte transition is of paramount importance to modulate the adipose tissue expansion. It has been previously reported that the adipogenic program of hMSC can be disrupted by upregulating caveolar proteins, and polymerase I and transcript release factor (PTRF) is an integral component of caveolae, highly expressed in adipose tissue. Here, we hypothesized that the role of PTRF in adipocyte functionality might stem from an effect on hMSC. To test this hypothesis, we isolated hMSC from the subcutaneous fat depot. We found an upregulated expression of the PTRF associated with decreased adipogenic potential of hMSC, likely due to the existence of senescent adipocyte precursors. Employing short hairpin RNA-based constructs to stably reduce PTRF, we were able to restore insulin sensitivity and reduced basal lipolysis and leptin levels in human adipocytes with high levels of PTRF. Additionally, we pinpointed the detrimental effect caused by PTRF on the adipose tissue to the existence of senescent adipocyte precursors unable to proliferate and differentiate into adipocytes. This study provides evidence that impaired adipocyte functionality can be corrected, at least partially, by PTRF downregulation and warrants further in vivo research in patients with dysfunctional adipose tissue to prevent metabolic complications.
人体脂肪组织的健康扩张需要间充质干细胞(hMSC)能够增殖并分化为成熟的脂肪细胞。因此,表征那些协调hMSC向脂肪细胞转变的因素对于调节脂肪组织扩张至关重要。此前已有报道称,上调小窝蛋白可破坏hMSC的成脂程序,而聚合酶I和转录释放因子(PTRF)是小窝的一个组成部分,在脂肪组织中高度表达。在此,我们假设PTRF在脂肪细胞功能中的作用可能源于对hMSC的影响。为了验证这一假设,我们从皮下脂肪库中分离出hMSC。我们发现PTRF的表达上调与hMSC的成脂潜能降低有关,这可能是由于衰老的脂肪细胞前体的存在。利用基于短发夹RNA的构建体稳定降低PTRF,我们能够恢复高PTRF水平的人脂肪细胞中的胰岛素敏感性,并降低基础脂肪分解和瘦素水平。此外,我们指出PTRF对脂肪组织造成的有害影响是由于衰老的脂肪细胞前体无法增殖并分化为脂肪细胞。这项研究提供了证据,表明通过下调PTRF至少可以部分纠正受损的脂肪细胞功能,并且有必要对脂肪组织功能失调的患者进行进一步的体内研究,以预防代谢并发症。