Multiplexed proteomics of autophagy-deficient murine macrophages reveals enhanced antimicrobial immunity via the oxidative stress response

被引:8
作者
Maculins, Timurs [1 ,2 ]
Verschueren, Erik [3 ,13 ]
Hinkle, Trent [3 ]
Choi, Meena [3 ,4 ]
Chang, Patrick [5 ]
Chalouni, Cecile [5 ]
Rao, Shilpa [6 ]
Kwon, Youngsu [7 ]
Lim, Junghyun [1 ]
Katakam, Anand Kumar [5 ]
Kunz, Ryan C. [8 ]
Erickson, Brian K. [8 ]
Huang, Ting [4 ]
Tsai, Tsung-Heng [4 ,9 ]
Vitek, Olga [4 ]
Reichelt, Mike [5 ]
Senbabaoglu, Yasin [6 ]
Mckenzie, Brent [7 ]
Rohde, John R. [10 ]
Dikic, Ivan [2 ,11 ]
Kirkpatrick, Donald S. [12 ]
Murthy, Aditya [12 ]
机构
[1] Genentech Inc, Dept Canc Immunol, San Francisco, CA USA
[2] Goethe Univ, Inst Biochem 2, Frankfurt, Germany
[3] Genentech Inc, Dept Microchem Prote & Lipid, San Francisco, CA USA
[4] Northeastern Univ, Khoury Coll Comp Sci, Boston, MA 02115 USA
[5] Genentech Inc, Dept Pathol, San Francisco, CA USA
[6] Genentech Inc, Dept Oncol Bioinformat, San Francisco, CA USA
[7] Genentech Inc, Dept Translat Immunol, San Francisco, CA USA
[8] IQ Prote LLC, Cambridge, MA USA
[9] Kent State Univ, Dept Math Sci, Kent, OH 44242 USA
[10] Dalhousie Univ, Dept Microbiol & Immunol, Halifax, NS, Canada
[11] Genentech Inc, Dept Infect Dis, San Francisco, CA 94080 USA
[12] Interline Therapeut, San Francisco, CA 94080 USA
[13] Galapagos NV, Mechelen, Belgium
基金
欧洲研究理事会;
关键词
GENOME-WIDE ASSOCIATION; NF-KAPPA-B; SELECTIVE AUTOPHAGY; CROHN-DISEASE; PROTEIN; DEGRADATION; SHIGELLA; VARIANT; MITOCHONDRIAL; ACTIVATION;
D O I
10.7554/eLife.62320
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Defective autophagy is strongly associated with chronic inflammation. Loss-of-function of the core autophagy gene Atg16l1 increases risk for Crohn's disease in part by enhancing innate immunity through myeloid cells such as macrophages. However, autophagy is also recognized as a mechanism for clearance of certain intracellular pathogens. These divergent observations prompted a re-evaluation of ATG16L1 in innate antimicrobial immunity. In this study, we found that loss of Atg16l1 in myeloid cells enhanced the killing of virulent Shigella flexneri (S.flexneri), a clinically relevant enteric bacterium that resides within the cytosol by escaping from membrane-bound compartments. Quantitative multiplexed proteomics of murine bone marrow-derived macrophages revealed that ATG16L1 deficiency significantly upregulated proteins involved in the glutathione-mediated antioxidant response to compensate for elevated oxidative stress, which simultaneously promoted S.flexneri killing. Consistent with this, myeloid-specific deletion of Atg16l1 in mice accelerated bacterial clearance in vitro and in vivo. Pharmacological induction of oxidative stress through suppression of cysteine import enhanced microbial clearance by macrophages. Conversely, antioxidant treatment of macrophages permitted S.flexneri proliferation. These findings demonstrate that control of oxidative stress by ATG16L1 and autophagy regulates antimicrobial immunity against intracellular pathogens.
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页数:30
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