Macrophage-associated wound healing contributes to African green monkey SIV pathogenesis control

Author:

Barrenas Fredrik,Raehtz Kevin,Xu Cuiling,Law Lynn,Green Richard R.,Silvestri Guido,Bosinger Steven E.,Nishida Andrew,Li QingshengORCID,Lu Wuxun,Zhang Jianshui,Thomas Matthew J.,Chang Jean,Smith Elise,Weiss Jeffrey M.,Dawoud Reem A.,Richter George H.,Trichel Anita,Ma Dongzhu,Peng XinxiaORCID,Komorowski JanORCID,Apetrei Cristian,Pandrea Ivona,Gale MichaelORCID

Abstract

Abstract Natural hosts of simian immunodeficiency virus (SIV) avoid AIDS despite lifelong infection. Here, we examined how this outcome is achieved by comparing a natural SIV host, African green monkey (AGM) to an AIDS susceptible species, rhesus macaque (RM). To asses gene expression profiles from acutely SIV infected AGMs and RMs, we developed a systems biology approach termed Conserved Gene Signature Analysis (CGSA), which compared RNA sequencing data from rectal AGM and RM tissues to various other species. We found that AGMs rapidly activate, and then maintain, evolutionarily conserved regenerative wound healing mechanisms in mucosal tissue. The wound healing protein fibronectin shows distinct tissue distribution and abundance kinetics in AGMs. Furthermore, AGM monocytes exhibit an embryonic development and repair/regeneration signature featuring TGF-β and concomitant reduced expression of inflammatory genes compared to RMs. This regenerative wound healing process likely preserves mucosal integrity and prevents inflammatory insults that underlie immune exhaustion in RMs.

Funder

Division of Intramural Research, National Institute of Allergy and Infectious Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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