Dominant role of CDKN2B/p15INK4B of 9p21.3 tumor suppressor hub in inhibition of cell-cycle and glycolysis.

Xia, Yong; Liu, Yan; Yang, Chao; Simeone, Diane M; Sun, Tung-Tien; DeGraff, David J; Tang, Moon-Shong; Zhang, Yingkai et al. · Nat Commun · 2021

basic_science · Level V

Where this comes from

Abstract

Human chromosome 9p21.3 is susceptible to inactivation in cell immortalization and diseases, such as cancer, coronary artery disease and type-2 diabetes. Although this locus encodes three cyclin-dependent kinase (CDK) inhibitors (p15<sup>INK4B</sup>, p14<sup>ARF</sup> and p16<sup>INK4A</sup>), our understanding of their functions and modes of action is limited to the latter two. Here, we show that in vitro p15<sup>INK4B</sup> is markedly stronger than p16<sup>INK4A</sup> in inhibiting pRb1 phosphorylation, E2F activity and cell-cycle progression. In mice, urothelial cells expressing oncogenic HRas and lacking p15<sup>INK4B</sup>, but not those expressing HRas and lacking p16<sup>INK4A</sup>, develop early-onset bladder tumors. The potency of CDKN2B/p15<sup>INK4B</sup> in tumor suppression relies on its strong binding via key N-terminal residues to and inhibition of CDK4/CDK6. p15<sup>INK4B</sup> also binds and inhibits enolase-1, a glycolytic enzyme upregulated in most cancer types. Our results highlight the dual inhibition of p15<sup>INK4B</sup> on cell proliferation, and unveil mechanisms whereby p15<sup>INK4B</sup> aberrations may underpin cancer and non-cancer conditions.

Medical subject headings