Calcineurin B1 Deficiency Reduces Proliferation, Increases Apoptosis, and Alters Secretion in Enteric Glial Cells of Mouse Small Intestine in Culture

Author:

Teramoto Hikaru1,Hirashima Naohide1,Tanaka Masahiko1ORCID

Affiliation:

1. Department of Cellular Biophysics, Graduate School of Pharmaceutical Sciences, Nagoya City University, Tanabe-dori, Mizuho-ku, Nagoya 467-8603, Japan

Abstract

To investigate the roles of calcineurin (CN) in glial cells, we previously generated conditional knockout (CKO) mice lacking CNB1 in glial cells. Because these CKO mice showed dysfunction and inflammation of the small intestine in addition to growth impairment and postweaning death, we have focused on enteric glial cells (EGCs) in the small intestine. In this study, we examined the effects of CNB1 deficiency on the proliferation and survival of EGCs and the expression and secretion of EGC-derived substances in culture to reveal the mechanisms of how CNB1 deficiency leads to dysfunction and inflammation of the small intestine. In primary myenteric cultures of the small intestine, EGCs from the CKO mice showed reduced proliferation and increased apoptosis compared with EGCs from control mice. In purified EGC cultures from the CKO mice, Western blot analysis showed increased expression of S100B, iNOS, GFAP, and GDNF, and increased phosphorylation of NF-κB p65. In the supernatants of purified EGC cultures from the CKO mice, ELISA showed reduced secretion of TGF-β1. In contrast, GDNF secretion was not altered in purified EGC cultures from the CKO mice. Furthermore, treatment with an S100B inhibitor partially rescued the CKO mice from growth impairment and postweaning death in vivo. In conclusion, CNB1 deficiency leads to reduced proliferation and increased apoptosis of EGCs and abnormal expression and secretion of EGC-derived substances, which may contribute to dysfunction and inflammation of the small intestine.

Funder

Japan Society for the Promotion of Science

Publisher

MDPI AG

Subject

General Medicine

Reference44 articles.

1. Calcineurin: Form and function;Rusnak;Physiol. Rev.,2000

2. Second messengers and membrane trafficking direct and organize growth cone steering;Tojima;Nat. Rev. Neurosci.,2011

3. Neural functions of calcineurin in synaptic plasticity and memory;Mansuy;Learn. Mem.,2012

4. Calcineurin and its role in synaptic transmission;Tarasova;Biochemistry,2018

5. Calcineurin and glial signaling: Neuroinflammation and beyond;Furman;J. Neuroinflamm.,2014

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