AI Article Synopsis

  • The study highlights that in many cancers, mutations in the TGF-beta type 11 receptor (TbetaRII) lead to reduced sensitivity to TGF-beta's growth-inhibitory effects.
  • Mac-1 and Mac-2A cells, derived from the same patient with lymphoma, show a clear contrast where Mac-1 cells are sensitive to TGF-beta while Mac-2A cells are resistant due to a mutation in TbetaRII.
  • The mutation (D404G) in Mac-2A cells blocks the wild-type receptor's presence on the cell surface, representing a new mechanism by which cancer cells can evade TGF-beta's growth control.

Article Abstract

In many cancers, inactivating mutations in both alleles of the transforming growth factor beta (TGF-beta) type 11 receptor (TbetaRII) gene occur and correlate with loss of sensitivity to TGF-beta. Here we describe a novel mechanism for loss of sensitivity to growth inhibition by TGF-beta in tumor development. Mac-1 cells, isolated from the blood of a patient with an indolent form of cutaneous T-cell lymphoma, express wild-type TbetaRII and are sensitive to TGF-beta. Mac-2A cells, clonally related to Mac-1 and isolated from a skin nodule of the same patient at a later, clinically aggressive stage of lymphoma, are resistant to TGF-beta. They express both the wild-type TbetaRII and a receptor with a single point mutation (Asp-404-Gly [D404G]) in the kinase domain (D404G-->TbetaRII); no TbetaRI or TbetaRII is found on the plasma membrane, suggesting that D404G-TbetaRII dominantly inhibits the function of the wild-type receptor by inhibiting its appearance on the plasma membrane. Indeed, inducible expression, under control of a tetracycline-regulated promoter, of D404G-TbetaRII in TGF-beta- sensitive Mac-1 cells as well as in Hep3B hepatoma cells results in resistance to TGF-beta and disappearance of cell surface TbetaRI and TbetaRII. Overexpression of wild-type TbetaRII in Mac-2A cells restores cell surface TbetaRI and TbetaRH and sensitivity to TGF-beta. The ability of the D404G-TbetaRH to dominantly inhibit function of wild-type TGF-beta receptors represents a new mechanism for loss of sensitivity to the growth-inhibitory functions of TGF-beta in tumor development.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC231343PMC
http://dx.doi.org/10.1128/MCB.16.7.3480DOI Listing

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