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ING1 and ING2: multifaceted tumor suppressor genes

期刊

CELLULAR AND MOLECULAR LIFE SCIENCES
卷 70, 期 20, 页码 3753-3772

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00018-013-1270-z

关键词

ING1; ING2; Tumor suppressor gene; p53; H3K4Me3

资金

  1. INSERM (Institut National de la Sante et de la Recherche Medicale)
  2. French Ministry of Education and Research
  3. EMBO [ALTF 834-2011]
  4. La Ligue Contre le Cancer (Grand Ouest)
  5. Association pour la Recherche sur le Cancer (ARC)
  6. Rennes Metropole (AIS)
  7. Leucemie Espoir grants

向作者/读者索取更多资源

Inhibitor of Growth 1 (ING1) was identified and characterized as a candidate tumor suppressor gene in 1996. Subsequently, four more genes, also characterized as candidate tumor suppressor genes, were identified by homology search: ING2, ING3, ING4, and ING5. The ING proteins are characterized by a high homology in their C-terminal domain, which contains a Nuclear Localization Sequence and a Plant HomeoDomain (PHD), which has a high affinity to Histone 3 tri-methylated on lysine 4 (H3K4Me3). The ING proteins have been involved in the control of cell growth, senescence, apoptosis, chromatin remodeling, and DNA repair. Within the ING family, ING1 and ING2 form a subgroup since they are evolutionarily and functionally close. In yeast, only one gene, Pho23, is related to ING1 and ING2 and possesses also a PHD. Recently, the ING1 and ING2 tumor suppressor status has been fully established since several studies have described the loss of ING1 and ING2 protein expression in human tumors and both ING1 and ING2 knockout mice were reported to have spontaneously developed tumors, B cell lymphomas, and soft tissue sarcomas, respectively. In this review, we will describe for the first time what is known about the ING1 and ING2 genes, proteins, their regulations in both human and mice, and their status in human tumors. Furthermore, we explore the current knowledge about identified functions involving ING1 and ING2 in tumor suppression pathways especially in the control of cell cycle and in genome stability.

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