Mechanisms of induction of airway smooth muscle hyperplasia by transforming growth factor-beta. 2007

Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
Airway Disease Section, National Heart and Lung Institute, Imperial College London, London, United Kingdom.

Airway smooth muscle (ASM) hyperplasia is a characteristic feature of the asthmatic airway, but the underlying mechanisms that induce ASM hyperplasia remain unknown. Because transforming growth factor (TGF)-beta is a potent regulator of ASM cell proliferation, we determined its expression and mitogenic signaling pathways in ASM cells. We obtained ASM cells by laser capture microdissection of bronchial biopsies and found that ASM cells from asthmatic patients expressed TGF-beta1 mRNA and protein to a greater extent than nonasthmatic individuals using real-time RT-PCR and immunohistochemistry, respectively. TGF-beta1 stimulated the growth of nonconfluent and confluent ASM cells either in the presence or absence of serum in a time- and concentration-dependent manner. The mitogenic activity of TGF-beta1 on ASM cells was inhibited by selective inhibitors of TGF-beta receptor I kinase (SD-208), phosphatidylinositol 3-kinase (PI3K, LY-294002), ERK (PD-98059), JNK (SP-600125), and NF-kappaB (AS-602868). On the other hand, p38 MAPK inhibitor (SB-203580) augmented TGF-beta1-induced proliferation. To study role of the Smads, we transduced ASM cells with an adenovirus vector-expressing Smad4, Smad7, or dominant-negative Smad3 and found no involvement of these Smads in TGF-beta1-induced proliferation. Dexamethasone caused a dose-dependent inhibition in TGF-beta1-induced proliferation. Our findings suggest that TGF-beta1 may act in an autocrine fashion to induce ASM hyperplasia, mediated by its receptor and several kinases including PI3K, ERK, and JNK, whereas p38 MAPK is a negative regulator. NF-kappaB is also involved in the TGF-beta1 mitogenic signaling, but Smad pathway does not appear important.

UI MeSH Term Description Entries
D006965 Hyperplasia An increase in the number of cells in a tissue or organ without tumor formation. It differs from HYPERTROPHY, which is an increase in bulk without an increase in the number of cells. Hyperplasias
D008297 Male Males
D011965 Receptors, Glucocorticoid Cytoplasmic proteins that specifically bind glucocorticoids and mediate their cellular effects. The glucocorticoid receptor-glucocorticoid complex acts in the nucleus to induce transcription of DNA. Glucocorticoids were named for their actions on blood glucose concentration, but they have equally important effects on protein and fat metabolism. Cortisol is the most important example. Corticoid Type II Receptor,Glucocorticoid Receptors,Glucocorticoids Receptor,Corticoid II Receptor,Corticoid Type II Receptors,Glucocorticoid Receptor,Receptors, Corticoid II,Receptors, Corticoid Type II,Receptors, Glucocorticoids,Corticoid II Receptors,Glucocorticoids Receptors,Receptor, Corticoid II,Receptor, Glucocorticoid,Receptor, Glucocorticoids
D012137 Respiratory System The tubular and cavernous organs and structures, by means of which pulmonary ventilation and gas exchange between ambient air and the blood are brought about. Respiratory Tract,Respiratory Systems,Respiratory Tracts,System, Respiratory,Tract, Respiratory
D003907 Dexamethasone An anti-inflammatory 9-fluoro-glucocorticoid. Hexadecadrol,Decaject,Decaject-L.A.,Decameth,Decaspray,Dexasone,Dexpak,Hexadrol,Maxidex,Methylfluorprednisolone,Millicorten,Oradexon,Decaject L.A.
D005260 Female Females
D005786 Gene Expression Regulation Any of the processes by which nuclear, cytoplasmic, or intercellular factors influence the differential control (induction or repression) of gene action at the level of transcription or translation. Gene Action Regulation,Regulation of Gene Expression,Expression Regulation, Gene,Regulation, Gene Action,Regulation, Gene Expression
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000077293 Receptor, Transforming Growth Factor-beta Type I A transmembrane serine-threonine kinase that forms a heteromeric complex with TYPE II TGF-BETA RECEPTORS to bind TGF-BETA and regulate a variety of physiological and pathological processes including CELL CYCLE ARREST; CELL PROLIFERATION; CELL DIFFERENTIATION; WOUND HEALING; EXTRACELLULAR MATRIX production, immunosuppression and ONCOGENESIS. Activin Receptor-like Kinase 5,Receptor, TGF-beta Type I,Serine-Threonine-Protein Kinase Receptor R4,TGF-beta RPK,TGF-beta Receptor Protein Kinase,TGF-beta Type I Receptor,TGF-beta Type I Receptors,TGFBR1,TbetaR-I Kinase,Transforming Growth Factor beta Receptor I,Transforming Growth Factor, beta Receptor 1,Type I TGF-beta Receptor,Type I TGF-beta Receptors,Activin Receptor like Kinase 5,Kinase, TbetaR-I,Serine Threonine Protein Kinase Receptor R4,TGF beta Receptor Protein Kinase,TGF beta Type I Receptor,TGF beta Type I Receptors,TbetaR I Kinase,Type I TGF beta Receptor,Type I TGF beta Receptors
D000081082 Phosphoinositide-3 Kinase Inhibitors Agents that inhibit PHOSPHOINOSITIDE-3 KINASE activity. Phosphoinositide-3 Kinase Inhibitor,Inhibitor, Phosphoinositide-3 Kinase,Inhibitors, Phosphoinositide-3 Kinase,Kinase Inhibitor, Phosphoinositide-3,Kinase Inhibitors, Phosphoinositide-3,Phosphoinositide 3 Kinase Inhibitor,Phosphoinositide 3 Kinase Inhibitors

Related Publications

Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
February 2006, American journal of respiratory cell and molecular biology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
September 1998, Atherosclerosis,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
May 2004, The Journal of urology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
August 2022, Journal of traditional Chinese medicine = Chung i tsa chih ying wen pan,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
February 1994, The American journal of pathology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
March 2013, American journal of respiratory cell and molecular biology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
January 1991, Comptes rendus de l'Academie des sciences. Serie III, Sciences de la vie,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
April 2004, American journal of physiology. Lung cellular and molecular physiology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
March 1995, The Journal of urology,
Shaoping Xie, and Maria B Sukkar, and Razao Issa, and Nadia M Khorasani, and Kian Fan Chung
October 1998, British journal of pharmacology,
Copied contents to your clipboard!