Mammalian Target of Rapamycin (mTOR) Induces Proliferation and De-Differentiation Responses to Three Coordinate Pathophysiologic Stimuli (Mechanical Strain, Hypoxia, and Extracellular Matrix Remodeling) in Rat Bladder Smooth Muscle

被引:48
作者
Aitken, Karen J. [2 ,3 ]
Tolg, Cornelia [3 ]
Panchal, Trupti
Leslie, Bruno [3 ]
Yu, Jeffery
Elkelini, Mohamed [2 ]
Sabha, Nesrin
Tse, Derrick J.
Lorenzo, Armando J. [3 ]
Hassouna, Magdy [2 ]
Bagli, Darius J. [1 ,2 ,3 ]
机构
[1] Hosp Sick Children, Res Inst, Div Urol & Dev & Stem Cell Biol, Toronto, ON M5G 1X8, Canada
[2] Univ Toronto, Inst Med Sci, Toronto, ON M5S 1A1, Canada
[3] Hosp Sick Children, Div Urol, Toronto, ON M5G 1X8, Canada
关键词
OUTLET OBSTRUCTION; GENE-EXPRESSION; CELL-GROWTH; STRETCH INJURY; MEDIATES STRETCH; TENASCIN-C; BLOOD-FLOW; S6; KINASE; IN-VITRO; RECEPTOR;
D O I
10.2353/ajpath.2010.080834
中图分类号
R36 [病理学];
学科分类号
100103 [病原生物学];
摘要
Maladaptive bladder muscle overgrowth and de-differentiation in human bladder obstructive conditions is instigated by coordinate responses to three stimuli: mechanical strain, tissue hypoxia, and extracellular matrix remodeling.(1,2) Pathway analysis of genes induced by obstructive models of injury in bladder smooth muscle cells (BSMCs) identified a mammalian target of rapamycin (mTOR)-specific inhibitor as a potential pharmacological inhibitor. Strain-induced mTOR-specific S6K activation segregated differently from ERK1/2 activation in intact bladder ex vivo. Though rapamycin's antiproliferative effects in vascular smooth muscle cells are well known, its effects on BSMCs were previously unknown. Rapamycin significantly inhibited proliferation of BSMCs in response to mechanical strain, hypoxia, and denatured collagen. Rapamycin inhibited S6K at mTOR-sensitive phosphorylation sites in response to strain and hypoxia. Rapamycin also supported smooth muscle actin expression in response to strain or hypoxia-induced de-differentiation. Importantly, strain plus hypoxia synergistically augmented mTOR-dependent S6K activation, Mmp7 expression and proliferation. Forced expression of wild-type and constitutively active S6K resulted in loss of smooth muscle actin expression. Decreased smooth muscle actin, increased Mmp7 levels and mTOR pathway activation during in vivo partial bladder obstruction paralleled our in vitro studies. These results point to a coordinate role for mTOR in BSMCs responses to the three stimuli and a potential new therapeutic target for myopathic bladder disease. (Am J Pathol 2010, 176:304-319; DOI: 10.2353/ajpath.2010.080834)
引用
收藏
页码:304 / 319
页数:16
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