Literature DB >> 27514476

Soluble bioactive microbial mediators regulate proteasomal degradation and autophagy to protect against inflammation-induced stress.

Yuhei Inaba1, Nobuhiro Ueno1, Masatsugu Numata2, Xiaorong Zhu3, Jeannette S Messer3, David L Boone4, Mikihiro Fujiya5, Yutaka Kohgo5, Mark W Musch3, Eugene B Chang6.   

Abstract

Bifidobacterium breve and other Gram-positive gut commensal microbes protect the gastrointestinal epithelium against inflammation-induced stress. However, the mechanisms whereby these bacteria accomplish this protection are poorly understood. In this study, we examined soluble factors derived from Bifidobacterium breve and their impact on the two major protein degradation systems within intestinal epithelial cells, proteasomes and autophagy. Conditioned media from gastrointestinal Gram-positive, but not Gram-negative, bacteria activated autophagy and increased expression of the autophagy proteins Atg5 and Atg7 along with the stress response protein heat shock protein 27. Specific examination of media conditioned by the Gram-positive bacterium Bifidobacterium breve (Bb-CM) showed that this microbe produces small molecules (<3 kDa) that increase expression of the autophagy proteins Atg5 and Atg7, activate autophagy, and inhibit proteasomal enzyme activity. Upregulation of autophagy by Bb-CM was mediated through MAP kinase signaling. In vitro studies using C2BBe1 cells silenced for Atg7 and in vivo studies using mice conditionally deficient in intestinal epithelial cell Atg7 showed that Bb-CM-induced cytoprotection is dependent on autophagy. Therefore, this work demonstrates that Gram-positive bacteria modify protein degradation programs within intestinal epithelial cells to promote their survival during stress. It also reveals the therapeutic potential of soluble molecules produced by these microbes for prevention and treatment of gastrointestinal disease.
Copyright © 2016 the American Physiological Society.

Entities:  

Keywords:  Atg5; Atg7; cell death; cell survival; host-microbe interaction; inflammatory bowel diseases; microbiota; microflora; mucosal inflammation; peptidoglycan

Mesh:

Substances:

Year:  2016        PMID: 27514476      PMCID: PMC5142193          DOI: 10.1152/ajpgi.00092.2016

Source DB:  PubMed          Journal:  Am J Physiol Gastrointest Liver Physiol        ISSN: 0193-1857            Impact factor:   4.052


  86 in total

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Journal:  Nature       Date:  2013-11-13       Impact factor: 49.962

Review 2.  Endoplasmic reticulum stress, the unfolded protein response, autophagy, and the integrated regulation of breast cancer cell fate.

Authors:  Robert Clarke; Katherine L Cook; Rong Hu; Caroline O B Facey; Iman Tavassoly; Jessica L Schwartz; William T Baumann; John J Tyson; Jianhua Xuan; Yue Wang; Anni Wärri; Ayesha N Shajahan
Journal:  Cancer Res       Date:  2012-03-15       Impact factor: 12.701

3.  Autophagy and apoptosis: what is the connection?

Authors:  Jacob M Gump; Andrew Thorburn
Journal:  Trends Cell Biol       Date:  2011-05-10       Impact factor: 20.808

4.  Colon-specific delivery of a probiotic-derived soluble protein ameliorates intestinal inflammation in mice through an EGFR-dependent mechanism.

Authors:  Fang Yan; Hanwei Cao; Timothy L Cover; M Kay Washington; Yan Shi; LinShu Liu; Rupesh Chaturvedi; Richard M Peek; Keith T Wilson; D Brent Polk
Journal:  J Clin Invest       Date:  2011-05-23       Impact factor: 14.808

5.  Increase in colorectal epithelial apoptotic cells in patients with ulcerative colitis ultimately requiring surgery.

Authors:  Chikara Hagiwara; Masanori Tanaka; Hajime Kudo
Journal:  J Gastroenterol Hepatol       Date:  2002-07       Impact factor: 4.029

6.  Enteric flora and lymphocyte-derived cytokines determine expression of heat shock proteins in mouse colonic epithelial cells.

Authors:  Keishi Kojima; Mark W Musch; Hongyu Ren; David L Boone; Barbara A Hendrickson; Averil Ma; Eugene B Chang
Journal:  Gastroenterology       Date:  2003-05       Impact factor: 22.682

Review 7.  Integration of autophagy, proteasomal degradation, unfolded protein response and apoptosis.

Authors:  D M Benbrook; A Long
Journal:  Exp Oncol       Date:  2012-10

8.  Impairment of starvation-induced and constitutive autophagy in Atg7-deficient mice.

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Journal:  J Cell Biol       Date:  2005-05-02       Impact factor: 10.539

9.  Proteasome inhibitors activate autophagy involving inhibition of PI3K-Akt-mTOR pathway as an anti-oxidation defense in human RPE cells.

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Journal:  PLoS One       Date:  2014-07-25       Impact factor: 3.240

10.  Paneth cells as a site of origin for intestinal inflammation.

Authors:  Timon E Adolph; Michal F Tomczak; Lukas Niederreiter; Hyun-Jeong Ko; Janne Böck; Eduardo Martinez-Naves; Jonathan N Glickman; Markus Tschurtschenthaler; John Hartwig; Shuhei Hosomi; Magdalena B Flak; Jennifer L Cusick; Kenji Kohno; Takao Iwawaki; Susanne Billmann-Born; Tim Raine; Richa Bharti; Ralph Lucius; Mi-Na Kweon; Stefan J Marciniak; Augustine Choi; Susan J Hagen; Stefan Schreiber; Philip Rosenstiel; Arthur Kaser; Richard S Blumberg
Journal:  Nature       Date:  2013-10-02       Impact factor: 49.962

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  2 in total

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Authors:  K G Lassen; R J Xavier
Journal:  Mucosal Immunol       Date:  2017-03-22       Impact factor: 7.313

2.  The Beneficial Effects of Probiotics via Autophagy: A Systematic Review.

Authors:  Marzieh Nemati; Gholamhossein Ranjbar Omrani; Bahareh Ebrahimi; Nima Montazeri-Najafabady
Journal:  Biomed Res Int       Date:  2021-12-03       Impact factor: 3.411

  2 in total

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