Increased LIGHT expression and activation of non-canonical NF-κB are observed in gastric lesions of MyD88-deficient mice upon Helicobacter felis infection

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作者
Raquel Mejías-Luque
Ivonne Lozano-Pope
Andreas Wanisch
Matthias Heikenwälder
Markus Gerhard
Marygorret Obonyo
机构
[1] Technical University of Munich,Institute for Medical Microbiology, Immunology, and Hygiene
[2] School of Medicine,Department of Medicine, School of Medicine
[3] German Centre for Infection Research (DZIF),Division of Chronic Inflammation and Cancer
[4] partner site Munich,undefined
[5] University of California,undefined
[6] San Diego,undefined
[7] La Jolla,undefined
[8] German Cancer Research Center (DKFZ),undefined
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Scientific Reports | / 9卷
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Helicobacter pylori infection induces a number of pro-inflammatory signaling pathways contributing to gastric inflammation and carcinogenesis. Among those, NF-κB signaling plays a pivotal role during infection and malignant transformation of the gastric epithelium. However, deficiency of the adaptor molecule myeloid differentiation primary response 88 (MyD88), which signals through NF-κB, led to an accelerated development of gastric pathology upon H. felis infection, but the mechanisms leading to this phenotype remained elusive. Non-canonical NF-κB signaling was shown to aggravate H. pylori-induced gastric inflammation via activation of the lymphotoxin β receptor (LTβR). In the present study, we explored whether the exacerbated pathology observed in MyD88-deficient (Myd88−/−) mice was associated with aberrant activation of non-canonical NF-κB. Our results indicate that, in the absence of MyD88, H. felis infection enhances the activation of non-canonical NF-κB that is associated with increase in Cxcl9 and Icam1 gene expression and CD3+ lymphocyte recruitment. In addition, activation of signal transducer and activator of transcription 3 (STAT3) signaling was higher in Myd88−/− compared to wild type (WT) mice, indicating a link between MyD88 deficiency and STAT3 activation in response to H. felis infection. Thereby, MyD88 deficiency results in accelerated and aggravated gastric pathology induced by Helicobacter through activation of non-canonical NF-κB.
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  • [31] Zhang S(2005)Overcoming Fas-mediated apoptosis accelerates Helicobacter-induced gastric cancer in mice Cancer research 110 155-1381
  • [32] Kanodia S(1996)Hypertrophic gastropathy in Helicobacter felis-infected wild-type C57BL/6 mice and p53 hemizygous transgenic mice Gastroenterology 306 1568-1762
  • [33] Miyagaki T(2004)Gastric cancer originating from bone marrow-derived cells Science 14 408-undefined
  • [34] Qiu HN(2008)Overexpression of interleukin-1beta induces gastric inflammation and cancer and mobilizes myeloid-derived suppressor cells in mice Cancer cell 16 398-undefined
  • [35] Wong CK(2011)Effects of myeloid differentiation primary response gene 88 (MyD88) activation on Helicobacter infection Helicobacter 66 1369-undefined
  • [36] Dong J(2017) and induction of a Th17 response Gut 29 1753-undefined
  • [37] Lam CW(2010)Lymphotoxin beta receptor signalling executes Helicobacter pylori-driven gastric inflammation in a T4SS-dependent manner Oncogene 13 e1006672-undefined
  • [38] Cai Z(2017)Inflammation modulates the expression of the intestinal mucins MUC2 and MUC4 in gastric tumors PLoS genetics undefined undefined-undefined
  • [39] Castellano R(undefined)hnRNP I regulates neonatal immune adaptation and prevents colitis and colorectal cancer undefined undefined undefined-undefined
  • [40] Marlink KL(undefined)undefined undefined undefined undefined-undefined