An optimized fractionation method reveals insulin-induced membrane surface localization of GLUT1 to increase glycolysis in LβT2 cells

优化的分馏方法揭示了胰岛素诱导的 GLUT1 膜表面定位,从而增加了 LβT2 细胞中的糖酵解

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作者:Olivia Molinar-Inglis, Kiara Wiggins, Anjali Varma, Zena Del Mundo, Jose M Adame, Alyssa Cozzo, Oscar Muñoz, Uyen-Vy Le, Davina Trinh, Alexis C Garcia, Metztli Cisneros-Aguirre, Monica L Gonzalez Ramirez, Jeremiah Keyes, Jin Zhang, Mark A Lawson, JoAnn Trejo, Dequina A Nicholas

Abstract

Insulin is an important regulator of whole-body glucose homeostasis. In insulin sensitive tissues such as muscle and adipose, insulin induces the translocation of glucose transporter 4 (GLUT4) to the cell membrane, thereby increasing glucose uptake. However, insulin also signals in tissues that are not generally associated with glucose homeostasis. In the human reproductive endocrine axis, hyperinsulinemia suppresses the secretion of gonadotropins from gonadotrope cells of the anterior pituitary, thereby linking insulin dysregulation to suboptimal reproductive health. In the mouse, gonadotropes express the insulin receptor which has the canonical signaling response of IRS, AKT, and mTOR activation. However, the functional outcomes of insulin action on gonadotropes are unclear. Here, we demonstrate through use of an optimized cell fractionation protocol that insulin stimulation of the LβT2 gonadotropic cell line results in the unexpected translocation of GLUT1 to the plasma membrane. Using our high purity fractionation protocol, we further demonstrate that though Akt signaling in response to insulin is intact, insulin-induced translocation of GLUT1 occurs independently of Akt activation in LβT2 cells.

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