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CD11c+ myeloid cell exosomes reduce intestinal inflammation during colitis
Kaylyn M. Bauer, Morgan C. Nelson, William W. Tang, Tyson R. Chiaro, D. Garrett Brown, Arevik Ghazaryan, Soh-Hyun Lee, Allison M. Weis, Jennifer H. Hill, Kendra A. Klag, Van B. Tran, Jacob W. Thompson, Andrew G. Ramstead, Josh K. Monts, James E. Marvin, Margaret Alexander, Warren P. Voth, W. Zac Stephens, Diane M. Ward, Aaron C. Petrey, June L. Round, Ryan M. O’Connell
Kaylyn M. Bauer, Morgan C. Nelson, William W. Tang, Tyson R. Chiaro, D. Garrett Brown, Arevik Ghazaryan, Soh-Hyun Lee, Allison M. Weis, Jennifer H. Hill, Kendra A. Klag, Van B. Tran, Jacob W. Thompson, Andrew G. Ramstead, Josh K. Monts, James E. Marvin, Margaret Alexander, Warren P. Voth, W. Zac Stephens, Diane M. Ward, Aaron C. Petrey, June L. Round, Ryan M. O’Connell
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Research Article Cell biology Immunology

CD11c+ myeloid cell exosomes reduce intestinal inflammation during colitis

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Abstract

Intercellular communication is critical for homeostasis in mammalian systems, including the gastrointestinal (GI) tract. Exosomes are nanoscale lipid extracellular vesicles that mediate communication between many cell types. Notably, the roles of immune cell exosomes in regulating GI homeostasis and inflammation are largely uncharacterized. By generating mouse strains deficient in cell-specific exosome production, we demonstrate deletion of the small GTPase Rab27A in CD11c+ cells exacerbated murine colitis, which was reversible through administration of DC-derived exosomes. Profiling RNAs within colon exosomes revealed a distinct subset of miRNAs carried by colon- and DC-derived exosomes. Among antiinflammatory exosomal miRNAs, miR-146a was transferred from gut immune cells to myeloid and T cells through a Rab27-dependent mechanism, targeting Traf6, IRAK-1, and NLRP3 in macrophages. Further, we have identified a potentially novel mode of exosome-mediated DC and macrophage crosstalk that is capable of skewing gut macrophages toward an antiinflammatory phenotype. Assessing clinical samples, RAB27A, select miRNAs, and RNA-binding proteins that load exosomal miRNAs were dysregulated in ulcerative colitis patient samples, consistent with our preclinical mouse model findings. Together, our work reveals an exosome-mediated regulatory mechanism underlying gut inflammation and paves the way for potential use of miRNA-containing exosomes as a novel therapeutic for inflammatory bowel disease.

Authors

Kaylyn M. Bauer, Morgan C. Nelson, William W. Tang, Tyson R. Chiaro, D. Garrett Brown, Arevik Ghazaryan, Soh-Hyun Lee, Allison M. Weis, Jennifer H. Hill, Kendra A. Klag, Van B. Tran, Jacob W. Thompson, Andrew G. Ramstead, Josh K. Monts, James E. Marvin, Margaret Alexander, Warren P. Voth, W. Zac Stephens, Diane M. Ward, Aaron C. Petrey, June L. Round, Ryan M. O’Connell

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Figure 2

Specific role for hematopoietic Rab27A in the regulation of colitis phenotypes.

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Specific role for hematopoietic Rab27A in the regulation of colitis phen...
(A) Weight loss of Rab27Afl/fl animals versus Vav-iCre Rab27A+ animals during a 7-day course of 2.5% w/v DSS (n = 18). (B) Colon length of animals from A, with data representative of 3 combined independent experiments. (C) Weight loss of floxed versus Vav-iCre Rab27B+ animals during an 8-day DSS course (n = 8). (D) Colon length of C, data representative of 2 independent experiments. (E) Weight loss of floxed versus Villin-Cre Rab27A+ animals during an 8-day DSS course (n = 9). (F) Colon length of E. (G) Weight loss of floxed versus Villin-Cre Rab27B+ animals during an 8-day DSS course (n = 7). (H) Colon length of G. (I) Percentage of colon crypt loss between genotypes of A. (J) Severity of colonic crypt damage of A. (K) Inflammation score of DSS-treated colons of A. (L) Total colon histology score of I–K (n = 8). (M) Representative H&E-stained colons from A. (N) Serum LCN2 levels of mice from A (n = 8). (O) Percentage of CD38+ “M1-like” macrophages in cLP of floxed and Vav-Rab27A cKO mice from A. (P) Percentage of cLP Th17 cells from floxed and Vav-Rab27A cKO mice, from A. (Q) Schematic of αIL-10R mAb experiment and weight loss of floxed or Vav-Cre Rab27A+ mice given mAb. (R) Colon length of Q. (S) Representative H&E staining of colons from R. (T) Total histology scores from R. (U) Percentage of CD38+ M1-like and Egr2+ macrophages in cLP of floxed and Vav-Rab27A cKO mice from Q. Two-way ANOVA mixed model analysis with Geisser-Greenhouse correction for weight loss graphs. Unpaired 2-tailed t test for bar graphs, except T. For T, 2-way ANOVA with Tukey’s multiple-comparison test comparing the column means. *P < 0.05, **P < 0.005, ***P < 0.0005. Scale bars in all images are 100 μm. See also Supplemental Figures 1 and 2.

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