Reducing the aneuploid cell burden – cell competition and the ribosome connection

Author:

Baker Nicholas E.1ORCID,Montagna Cristina2ORCID

Affiliation:

1. Albert Einstein College of Medicine 1 Departments of Genetics, Developmental and Molecular Biology, and Ophthalmology and Visual Sciences , , 1300 Morris Park Avenue, Bronx, NY 10461 , USA

2. Rutgers Cancer Institute of New Jersey 2 Department of Radiation Oncology , , 195 Little Albany Street, New Brunswick, NJ 08901 , USA

Abstract

ABSTRACT Aneuploidy, the gain or loss of chromosomes, is the cause of birth defects and miscarriage and is almost ubiquitous in cancer cells. Mosaic aneuploidy causes cancer predisposition, as well as age-related disorders. Despite the cell-intrinsic mechanisms that prevent aneuploidy, sporadic aneuploid cells do arise in otherwise normal tissues. These aneuploid cells can differ from normal cells in the copy number of specific dose-sensitive genes, and may also experience proteotoxic stress associated with mismatched expression levels of many proteins. These differences may mark aneuploid cells for recognition and elimination. The ribosomal protein gene dose in aneuploid cells could be important because, in Drosophila, haploinsufficiency for these genes leads to elimination by the process of cell competition. Constitutive haploinsufficiency for human ribosomal protein genes causes Diamond Blackfan anemia, but it is not yet known whether ribosomal protein gene dose contributes to aneuploid cell elimination in mammals. In this Review, we discuss whether cell competition on the basis of ribosomal protein gene dose is a tumor suppressor mechanism, reducing the accumulation of aneuploid cells. We also discuss how this might relate to the tumor suppressor function of p53 and the p53-mediated elimination of aneuploid cells from murine embryos, and how cell competition defects could contribute to the cancer predisposition of Diamond Blackfan anemia.

Funder

National Institutes of Health

Rutgers Cancer Institute of New Jersey

Publisher

The Company of Biologists

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology and Microbiology (miscellaneous),Medicine (miscellaneous),Neuroscience (miscellaneous)

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