Apelin and G212A apelin receptor gene polymorphism in obese and diabese youth
PEDIATRIC OBESITY
Authors: Kotanidou, E. P.; Kalinderi, K.; Kyrgios, I.; Efraimidou, S.; Fidani, L.; Papadopoulou-Alataki, E.; Eboriadou-Petikopoulou, M.; Galli-Tsinopoulou, A.
Abstract
ObjectiveThe apelinergic system has been previously described to participate in fluid homeostasis, cardiac contractility, blood pressure and neo-vascularization. The role of apelin in obesity and glucose metabolism has also lately gained interest; however, it still remains obscure. This study aimed to assess serum apelin levels in obese youngsters and to investigate any possible association with the G212A polymorphism of the apelin receptor (APLNR) gene. MethodsNinety obese individuals and 90 matched for age and gender lean controls were included. Anthropometric measurements, data of glucose metabolism, including an oral glucose tolerance test, and serum apelin levels were obtained. The presence of the G212A polymorphism of the APLNR gene was also analyzed in the obese group. ResultsObese participants had significantly lower serum apelin levels as compared with controls (P=0.011). After being grouped according to their status of glucose metabolism, only obese subjects with impaired glucose metabolism (diabese) exhibited lower apelin levels as compared with controls. The presence of the G212A polymorphism did not differ from the HapMap-reported frequencies in Caucasians (GG=53.3%/GA=38.9%/=7.8% vs. GG=46.9%/GA=39.8%/=13.3%, P=0.232). The GG and GA obese subgroups had significantly lower apelin levels as compared with the AA group (P=0.013 and P=0.016, respectively). ConclusionObese (especially diabese) youngsters demonstrated lower serum apelin levels; the G212A polymorphism of the APLNR gene was found to exert a favourable effect on circulating apelin levels in childhood obesity.
ELABELA Is an Endogenous Growth Factor that Sustains hESC Self-Renewal via the PI3K/AKT Pathway
CELL STEM CELL
Authors: Ho, Lena; Tan, Shawn Y. X.; Wee, Sheena; Wu, Yixuan; Tan, Sam J. C.; Ramakrishna, Navin B.; Chng, Serene C.; Nama, Srikanth; Szczerbinska, Iwona; Chan, Yun-Shen; Avery, Stuart; Tsuneyoshi, Norihiro; Huck Hui Ng; Gunaratne, Jayantha; Dunn, N. Ray; Reversade, Bruno
Abstract
ELABELA (ELA) is a peptide hormone required for heart development that signals via the Apelin Receptor (APLNR, APJ). ELA is also abundantly secreted by human embryonic stem cells (hESCs), which do not express APLNR. Here we show that ELA signals in a paracrine fashion in hESCs to maintain self-renewal. ELA inhibition by CRISPR/Cas9-mediated deletion, shRNA, or neutralizing antibodies causes reduced hESC growth, cell death, and loss of pluri-potency. Global phosphoproteomic and transcriptomic analyses of ELA-pulsed hESCs show that it activates PI3K/AKT/mTORC1 signaling required for cell survival. ELA promotes hESC cell-cycle progression and protein translation and blocks stress-induced apoptosis. INSULIN and ELA have partially overlapping functions in hESC medium, but only ELA can potentiate the TGF beta pathway to prime hESCs toward the endoderm lineage. We propose that ELA, acting through an alternate cell-surface receptor, is an endogenous secreted growth factor in human embryos and hESCs that promotes growth and pluripotency.