Loss of CD73 shifts transforming growth factor-β1 (TGF-β1) from tumor suppressor to promoter in endometrial cancer

Katherine C. Kurnit(University of Chicago), Ashley Draisey(University of Northern Iowa), Rebecca C. Kazen(The University of Texas MD Anderson Cancer Center), Christine Chung(The University of Texas MD Anderson Cancer Center), Luan Phan(The University of Texas Health Science Center at Houston), Jerry B. Harvey(Columbia University), Jiping Feng(The University of Texas MD Anderson Cancer Center), Su-Su Xie(University of North Carolina at Chapel Hill), Russell R. Broaddus(University of North Carolina at Chapel Hill), Jessica L. Bowser(University of North Carolina at Chapel Hill)
Cancer Letters
February 17, 2021
Cited by 26Open Access
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Abstract

In many tumors, CD73 (NT5E), a rate-limiting enzyme in adenosine biosynthesis, is upregulated by TGF-β and drives tumor progression. Conversely, CD73 is downregulated in endometrial carcinomas (EC) despite a TGF-β-rich environment. Through gene expression analyses of normal endometrium samples of the uterine cancer TCGA data set and genetic and pharmacological studies, we discovered CD73 loss shifts TGF-β1 from tumor suppressor to promoter in EC. TGF-β1 upregulated CD73 and epithelial integrity in vivo in the normal endometrium and in vitro in early stage EC cells. With loss of CD73, TGF-β1-mediated epithelial integrity was abrogated. EC cells developed TGF-β1-mediated stress fibers and macromolecule permeability, migration, and invasion increased. In human tumors, CD73 is downregulated in deeply invasive stage I EC. Consistent with shifting TGF-β1 activity, CD73 loss increased TGF-β1-mediated canonical signaling and upregulated cyclin D1 (CCND1) and downregulated p21 expression. This shift was clinically relevant, as CD73Low/CCND1High expression associated with poor tumor differentiation, increased myometrial and lymphatic/vascular space invasion, and patient death. Further loss of CD73 in CD73Low expressing advanced stage EC cells increased TGF-β-mediated stress fibers, signaling, and invasiveness, whereby adenosine A1 receptor agonist, CPA, dampened TGF-β-mediated invasion. These data identify CD73 loss as essential for shifting TGF-β activity in EC.


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