RRC ID 46090
Author Morthorst TH, Olsen A.
Title Cell-nonautonomous inhibition of radiation-induced apoptosis by dynein light chain 1 in Caenorhabditis elegans.
Journal Cell Death Dis
Abstract The evolutionarily conserved process of programmed cell death, apoptosis, is essential for development of multicellular organisms and is also a protective mechanism against cellular damage. We have identified dynein light chain 1 (DLC-1) as a new regulator of germ cell apoptosis in Caenorhabditis elegans. The DLC-1 protein is highly conserved across species and is a part of the dynein motor complex. There is, however, increasing evidence for dynein-independent functions of DLC-1, and our data describe a novel dynein-independent role. In mammalian cells, DLC-1 is important for cellular transport, cell division and regulation of protein activity, and it has been implicated in cancer. In C. elegans, we find that knockdown of dlc-1 by RNA interference (RNAi) induces excessive apoptosis in the germline but not in somatic cells during development. We show that DLC-1 mediates apoptosis through the genes lin-35, egl-1 and ced-13, which are all involved in the response to ionising radiation (IR)-induced apoptosis. In accordance with this, we show that IR cannot further induce apoptosis in dlc-1(RNAi) animals. Furthermore, we find that DLC-1 is functioning cell nonautonomously through the same pathway as kri-1 in response to IR-induced apoptosis and that DLC-1 regulates the levels of KRI-1. Our results strengthen the notion of a highly dynamic communication between somatic cells and germ cells in regulating the apoptotic process.
Volume 4(9)
Pages e799
Published 2013-9-12
DOI 10.1038/cddis.2013.319
PII cddis2013319
PMID 24030151
PMC PMC3789177
MeSH Animals Animals, Genetically Modified Apoptosis / radiation effects* Caenorhabditis elegans / cytology* Caenorhabditis elegans / genetics Caenorhabditis elegans / metabolism Caenorhabditis elegans / radiation effects* Caenorhabditis elegans Proteins / metabolism* Dyneins / metabolism* Germ Cells / cytology Germ Cells / metabolism Germ Cells / radiation effects Green Fluorescent Proteins / metabolism Models, Biological Radiation, Ionizing*
IF 6.304
Times Cited 7
WOS Category CELL BIOLOGY
Resource
C.elegans tm1950 tm1826 tm536 tm1458