puc-header

Calcium-Independent Astrocytic Lipid Release Modulates Neuronal Activity Through Kv Channels

38 Pages Posted: 29 Apr 2020 Publication Status: Review Complete

See all articles by Fushun Wang

Fushun Wang

University of Rochester - Department of Neurology

Heather Bradshaw

Indiana University - Department of Psychological and Brain Sciences

Salvador Pena

University of Rochester

Beata Jablonska

Children’s National Hospital - Center for Neuroscience Research

Julia Xavier

George Washington University

Sheng Gong

Case Western Reserve University

Baoman Li

University of Rochester - Department of Neurology

Devin Chandler-Militello

University of Rochester - Center for Translational Neuromedicine; University of Rochester Medical Center - Department of Neurology

Lane Bekar

University of Saskatchewan

Nathan Smith

Children's National Hospital- Center for Neuroscience Research ; George Washington University School of Medicine

More...

Abstract

Cumulative data point to a key role of Ca2+-dependent gliotransmitter release as a modulator of neuronal networks. Here, we tested the hypothesis that astrocytes in response to agonist exposure also release lipid modulators through Ca2+-independent phospholipase A2 (iPLA2) activity. We found that cultured rat astrocytes in response to agonist exposure, released Arachidonic Acid (AA) and/or its derivatives, including the endogenous cannabinoid, 2-arachidonoyl-sn-glycerol (2AG) and the prostaglandin E2 (PGE2). Surprisingly, buffering of cytosolic Ca2+ was linked to a sharp increase in astrocytic lipid release. In addition, astrocytic release of PGE2 enhanced mEPSPs by inhibiting the opening of neuronal Kv channels in acute brain slices. This study provides the first evidence for the existence of a Ca2+-independent pathway for the release of PGE2 from astrocytes and furthermore demonstrates a functional role for astrocytic lipid release in the modulation of synaptic activity.

Keywords: Astrocytes, Prostaglandin E2 (PGE2), 2-arachidonoyl-sn-glycerol (2AG), Arachidonic Acid (AA), mEPSP, Kv channels, iPLA2, cPLA2, CPA, and ATP

Suggested Citation

Wang, Fushun and Bradshaw, Heather and Pena, Salvador and Jablonska, Beata and Xavier, Julia and Gong, Sheng and Li, Baoman and Chandler-Militello, Devin and Bekar, Lane and Smith, Nathan, Calcium-Independent Astrocytic Lipid Release Modulates Neuronal Activity Through Kv Channels. Available at SSRN: https://ssrn.com/abstract=3577242 or http://dx.doi.org/10.2139/ssrn.3577242
This version of the paper has not been formally peer reviewed.

Fushun Wang

University of Rochester - Department of Neurology

Rochester, NY 14642
United States

Heather Bradshaw

Indiana University - Department of Psychological and Brain Sciences

107 S Indiana Ave
100 South Woodlawn
Bloomington, IN 47405
United States

Salvador Pena

University of Rochester

300 Crittenden Blvd.
Rochester, NY 14627
United States

Beata Jablonska

Children’s National Hospital - Center for Neuroscience Research

United States

Julia Xavier

George Washington University

2121 I Street NW
Washington, DC 20052
United States

Sheng Gong

Case Western Reserve University

10900 Euclid Ave.
Cleveland, OH 44106
United States

Baoman Li

University of Rochester - Department of Neurology

Rochester, NY 14642
United States

Devin Chandler-Militello

University of Rochester - Center for Translational Neuromedicine

United States

University of Rochester Medical Center - Department of Neurology

Rochester, NY 14642
United States

Lane Bekar

University of Saskatchewan

College of Education
Saskatoon, Saskatchewan S7N 5A7
Canada

Nathan Smith (Contact Author)

Children's National Hospital- Center for Neuroscience Research ( email )

111 Michigan Ave NW
Washington, DC 20010
United States
2024764312 (Phone)

George Washington University School of Medicine ( email )

3200m St NW
Washington, DC 20037
United States

Click here to go to Cell.com

Paper statistics

Downloads
62
Abstract Views
935
PlumX Metrics