Type 2 cGMP-dependent protein kinase regulates homeostasis by blocking c-Jun N-terminal kinase in the colon epithelium

被引:0
作者
R Wang
I-K Kwon
N Singh
B Islam
K Liu
S Sridhar
F Hofmann
D D Browning
机构
[1] Cancer Research Center,Department of Biochemistry and Molecular Biology
[2] Georgia Regents University,Department of Medicine
[3] Section of Gastroenterology and Hepatology,undefined
[4] Georgia Regents University,undefined
[5] Institut für Pharmakologie und Toxikologie,undefined
[6] Technische Universität München,undefined
来源
Cell Death & Differentiation | 2014年 / 21卷
关键词
cGMP; PKG2; colon; DUSP10; JNK;
D O I
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学科分类号
摘要
Analysis of knockout animals indicates that 3′,5′cyclic guanosine monophosphate (cGMP) has an important role in gut homeostasis but the signaling mechanism is not known. The goals of this study were to test whether increasing cGMP could affect colon homeostasis and determine the mechanism. We increased cGMP in the gut of Prkg2+/+ and Prkg2−/− mice by treating with the PDE5 inhibitor Vardenafil (IP). Proliferation, differentiation and apoptosis in the colon mucosa were then quantitated. Vardenafil (Vard) treatment increased cGMP in colon mucosa of all mice, but reduced proliferation and apoptosis, and increased differentiation only in Prkg2+/+ mice. Vard and cGMP treatment also increased dual specificity protein phosphatase 10 (DUSP10) expression and reduced phospho-c-Jun N-terminal kinase (JNK) levels in the colon mucosa of Prkg2+/+ but not Prkg2−/− mice. Treatment of Prkg2−/− mice with the JNK inhibitor SP600125 reversed the defective homeostasis observed in these animals. Activation of protein kinase G2 (PKG2) in goblet-like LS174T cells increased DUSP10 expression and reduced JNK activity. PKG2 also increased goblet cell-specific MUC2 expression in LS174T cells, and this process was blocked by DUSP10-specific siRNA. The ability of cGMP signaling to inhibit JNK-induced apoptosis in vivo was demonstrated using dextran sodium sulfate (DSS) to stress the colon epithelium. Vard was a potent inhibitor of DSS-induced epithelial apoptosis, and significantly blocked pathological endpoints in this model of experimental colitis. In conclusion, Vard treatment activates cGMP signaling in the colon epithelium. Increased PKG2 activity alters homeostasis by suppressing proliferation and apoptosis while promoting differentiation. The PKG2-dependent mechanism was shown to involve increased DUSP10 and subsequent inhibition of JNK activity.
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页码:427 / 437
页数:10
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共 162 条
[1]  
Forte LR(2004)Uroguanylin and guanylin peptides: pharmacology and experimental therapeutics Pharmacol Ther 104 137-162
[2]  
Steinbrecher KA(2011)Transmembrane guanylate cyclase in intestinal pathophysiology Curr Opin Gastroenterol 27 139-145
[3]  
Cohen MB(2000)Guanylyl cyclases and signaling by cyclic GMP Pharmacol Rev 52 375-414
[4]  
Lucas KA(1995)Endogenous expression of type II cGMP-dependent protein kinase mRNA and protein in rat intestine. Implications for cystic fibrosis transmembrane conductance regulator J Clin Invest 96 822-830
[5]  
Pitari GM(1996)Intestinal secretory defects and dwarfism in mice lacking cGMP-dependent protein kinase II Science 274 2082-2086
[6]  
Kazerounian S(2011)Stem cell self-renewal in intestinal crypt Exp Cell Res 317 2719-2724
[7]  
Ruiz-Stewart I(2011)Microenvironmental regulation of stem cells in intestinal homeostasis and cancer Nature 474 318-326
[8]  
Park J(2007)Homeostatic control of the crypt-villus axis by the bacterial enterotoxin receptor guanylyl cyclase C restricts the proliferating compartment in intestine Am J Pathol 171 1847-1858
[9]  
Schulz S(2002)Targeted inactivation of the mouse guanylin gene results in altered dynamics of colonic epithelial proliferation Am J Pathol 161 2169-2178
[10]  
Markert T(2012)Type 2 cGMP-dependent protein kinase regulates proliferation and differentiation in the colonic mucosa Am J Physiol Gastrointest Liver Physiol 303 G209-G219