Glutamate Secretion by Embryonic Stem Cells as an Autocrine Signal to Promote Proliferation

Author:

Lin Teng1,Qin Qin1,Zhou Ziyi1,Zhou Fei1,Cao Chunyu2,Yang Jian1,Ding Jia wang1

Affiliation:

1. Yichang Central People's Hospital, The First College of Clinical Medical Sciences, China Three Gorges University

2. China Three Gorges University

Abstract

Abstract Glutamate, the major excitatory neurotransmitter in the central nervous system, has also been found to play a role in embryonic stem (ES) cells. However, the exact mechanism and function of glutamatergic signaling in ES cells remain poorly understood. In this study, we identified a glutamatergic transmission circuit in ES cells that operates through an autocrine mechanism and regulates cell proliferation. We performed biological analyses to identify the key components involved in glutamate biosynthesis, packaging for secretion, reaction, and reuptake in ES cells, including glutaminase, vesicular glutamate transporter, glutamate NMDA receptor, and cell membrane excitatory amino-acid transporter. We directly quantified the released glutamate signal using liquid chromatography coupled with tandem mass spectrometry (LC-MS/MS). Pharmacological inhibition of endogenous glutamate release and the resulting tonic activation of NMDA receptors significantly affected ES cell proliferation, suggesting that ES cells establish a glutamatergic autocrine niche via releasing and responding to the transmitter for their own regulation.

Publisher

Research Square Platform LLC

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