Impaired tissue growth is mediated by checkpoint kinase 1 (CHK1) in the integrated stress response

Author:

Malzer Elke12,Daly Marie-Louise1,Moloney Aileen2,Sendall Timothy J.2,Thomas Sally E.1,Ryder Edward2,Ryoo Hyung Don3,Crowther Damian C.12,Lomas David A.1,Marciniak Stefan J.1

Affiliation:

1. Department of Medicine, University of Cambridge, Cambridge Institute for Medical Research (CIMR), Wellcome Trust/MRC Building, Hills Road, Cambridge, CB2 0XY, UK

2. Department of Genetics, University of Cambridge, Downing Site, Cambridge, CB2 3EH, UK

3. Department of Cell Biology, NYU Langone Medical Center, 550 First Avenue, New York, NY 1106, USA

Abstract

The integrated stress response (ISR) protects cells from numerous forms of stress and is involved in the growth of solid tumours; however, it is unclear how the ISR acts on cellular proliferation. We have developed a model of ISR signalling with which to study its effects on tissue growth. Overexpression of the ISR kinase PERK resulted in a striking atrophic eye phenotype in Drosophila melanogaster that could be rescued by co-expressing the eIF2α phosphatase GADD34. A genetic screen of 3000 transposon insertions identified grapes, the gene that encodes the Drosophila orthologue of checkpoint kinase 1 (CHK1). Knockdown of grapes by RNAi rescued eye development despite ongoing PERK activation. In mammalian cells, CHK1 was activated by agents that induce ER stress, which resulted in a G2 cell cycle delay. PERK was both necessary and sufficient for CHK1 activation. These findings indicate that non-genotoxic misfolded protein stress accesses DNA-damage-induced cell cycle checkpoints to couple the ISR to cell cycle arrest.

Publisher

The Company of Biologists

Subject

Cell Biology

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