Thyroid hormone inhibition in L6 myoblasts of IGF-I-mediated glucose uptake and proliferation: new roles for integrin αvβ3

Author:

Incerpi Sandra1,Hsieh Meng-Ti2,Lin Hung-Yun23,Cheng Guei-Yun2,De Vito Paolo4,Fiore Anna Maria1,Ahmed R. G.5,Salvia Rosanna1,Candelotti Elena1,Leone Stefano1,Luly Paolo4,Pedersen Jens Z.4,Davis Faith B.6,Davis Paul J.67

Affiliation:

1. Department of Sciences, University Roma Tre, Rome, Italy;

2. Taipei Cancer Center, Taipei Medical University, Taipei, Taiwan;

3. Graduate Institute of Cancer Biology and Drug Discovery, College of Medical Science and Technology, Taipei Medical University, Taipei, Taiwan;

4. Department of Biology, University Tor Vergata, Rome, Italy;

5. Department of Zoology, Beni-Suef University, Beni-Suef, Egypt;

6. Pharmaceutical Research Institute, Albany College of Pharmacy and Health Sciences, Albany, New York;

7. Department of Medicine, Albany Medical College, Albany, New York

Abstract

Thyroid hormones l-thyroxine (T4) and 3,3′,5-triiodo-l-thyronine (T3) have been shown to initiate short- and long-term effects via a plasma membrane receptor site located on integrin αvβ3. Also insulin-like growth factor type I (IGF-I) activity is known to be subject to regulation by this integrin. To investigate the possible cross-talk between T4and IGF-I in rat L6 myoblasts, we have examined integrin αvβ3-mediated modulatory actions of T4on glucose uptake, measured through carrier-mediated 2-deoxy-[3H]-d-glucose uptake, and on cell proliferation stimulated by IGF-I, assessed by cell counting, [3H]-thymidine incorporation, and fluorescence-activated cell sorting analysis. IGF-I stimulated glucose transport and cell proliferation via the cell surface IGF-I receptor (IGFIR) and, downstream of the receptor, by the phosphatidylinositol 3-kinase signal transduction pathway. Addition of 0.1 nM free T4caused little or no cell proliferation but prevented both glucose uptake and proliferative actions of IGF-I. These actions of T4were mediated by an Arg-Gly-Asp (RGD)-sensitive pathway, suggesting the existence of crosstalk between IGFIR and the T4receptor located near the RGD recognition site on the integrin. An RGD-sequence-containing integrin inhibitor, a monoclonal antibody to αvβ3, and the T4metabolite tetraiodothyroacetic acid all blocked the inhibition by T4of IGF-I-stimulated glucose uptake and cell proliferation. Western blotting confirmed roles for activated phosphatidylinositol 3-kinase and extracellular regulated kinase 1/2 (ERK1/2) in the effects of IGF-I and also showed a role for ERK1/2 in the actions of T4that modified the effects of IGF-I. We conclude that thyroid hormone inhibits IGF-I-stimulated glucose uptake and cell proliferation in L6 myoblasts.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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