The Antimicrobial Peptide CopA3 Inhibits Toxin A-Induced Viability Loss and Apoptosis in Neural Cells.

J Microbiol Biotechnol

Divison of Life Science and Chemistry, College of Natural Science, Daejin University, Pocheon 11159, Republic of Korea.

Published: January 2019

Numerous studies have reported that enteric neurons involved in controlling neurotransmitter secretion and motility in the gut critically contribute to the progression of gut inflammation. toxins, which cause severe colonic inflammation, are also known to affect enteric neurons. Our previous study showed that toxin A directly induces neural cell toxicities, such as viability loss and apoptosis. In the current study, we attempted to identify a potent inhibitor of toxin A-induced neural cell toxicity that may aid in managing toxin A-induced gut inflammation. In our recent study, we found that the Korea dung beetle-derived antimicrobial peptide CopA3 completely blocked neural cell apoptosis caused by okadaic acid or 6-OHDA. Here, we examined whether the antimicrobial peptide CopA3 inhibited toxin A-induced neural cell damage. In neuroblastoma SH-SY5Y cells, CopA3 treatment protected against both apoptosis and viability loss caused by toxin A. CopA3 also completely inhibited activation of the pro-apoptotic factor, caspase-3. Additionally, CopA3 rescued toxin A-induced downregulation of neural cell proliferation. However, CopA3 had no effect on signaling through ROS/p38 MAPK/p27, suggesting that CopA3 inhibits toxin A-induced neural cell toxicity independent of this well-characterized toxin A pathway. Our data further suggest that ability of CopA3 to rescue toxin A-induced neural cell damage may also ameliorate the gut inflammation caused by toxin A.

Download full-text PDF

Source
http://dx.doi.org/10.4014/jmb.1809.08065DOI Listing

Publication Analysis

Top Keywords

toxin a-induced
28
neural cell
28
a-induced neural
16
antimicrobial peptide
12
peptide copa3
12
viability loss
12
gut inflammation
12
toxin
11
copa3
9
copa3 inhibits
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!