TY - JOUR
T1 - Caenorhabditis elegans par2.1/mtssb-1 is essential for mitochondrial DNA replication and its defect causes comprehensive transcriptional alterations including a hypoxia response
AU - Sugimoto, Tomoko
AU - Mori, Chihiro
AU - Takanami, Takako
AU - Sasagawa, Yohei
AU - Saito, Rumiko
AU - Ichiishi, Eiichiro
AU - Higashitani, Atsushi
N1 - Funding Information:
We are very grateful to Drs. Nahoko Higashitani, Tadashi Sato, and Kazuhiro Sogawa for helpful suggestions and discussions. We also thank the C. elegans Genetics Center for kindly supplying the mutant strains. This work was supported by Grants-in-Aid for Scientific Research from the Ministry of Education, Culture, Sports, Science, and Technology of Japan, and from the Japan Society for the Promotion of Science (JSPS). This study also was carried out as part of the “Ground-Based Research Announcement for Space Utilization,” promoted by the Japan Space Forum.
PY - 2008/1/1
Y1 - 2008/1/1
N2 - DNA polymerase γ and mtSSB are key components of the mtDNA replication machinery. To study the biological influences of defects in mtDNA replication, we used RNAi to deplete the gene for a putative mtSSB, par2.1, in Caenorhabditis elegans. In previous systematic RNAi screens, downregulation of this gene has not caused any clearly defective phenotypes. Here, we continuously fed a dsRNA targeting par2.1 to C. elegans over generations. Seventy-nine percent of F1 progeny produced 60-72 h after feeding grew to adulthood but were completely sterile, with an arrest of germline cell proliferation. Analyses of mtDNA copy number and cell cytology indicated that the sterile hermaphrodites had fewer mitochondria. These results indicated that par2.1 essentially functions for germline cell proliferation through mtDNA replication; we therefore termed it mtssb-1. Comprehensive transcriptional alterations including hypoxia response induction dependent on and independent of hif-1 function, occurred by RNAi depletion of mtssb-1. Treatment with ethidium bromide, which impairs mtDNA replication and transcription, caused similar transcriptional alterations. In addition, the frequency of apoptosis in the germline cells was reduced in fertile progeny with a partial RNAi effect. These suggest that RNAi depletion of C. elegans mtssb-1 is useful as a model system of mitochondrial dysfunction.
AB - DNA polymerase γ and mtSSB are key components of the mtDNA replication machinery. To study the biological influences of defects in mtDNA replication, we used RNAi to deplete the gene for a putative mtSSB, par2.1, in Caenorhabditis elegans. In previous systematic RNAi screens, downregulation of this gene has not caused any clearly defective phenotypes. Here, we continuously fed a dsRNA targeting par2.1 to C. elegans over generations. Seventy-nine percent of F1 progeny produced 60-72 h after feeding grew to adulthood but were completely sterile, with an arrest of germline cell proliferation. Analyses of mtDNA copy number and cell cytology indicated that the sterile hermaphrodites had fewer mitochondria. These results indicated that par2.1 essentially functions for germline cell proliferation through mtDNA replication; we therefore termed it mtssb-1. Comprehensive transcriptional alterations including hypoxia response induction dependent on and independent of hif-1 function, occurred by RNAi depletion of mtssb-1. Treatment with ethidium bromide, which impairs mtDNA replication and transcription, caused similar transcriptional alterations. In addition, the frequency of apoptosis in the germline cells was reduced in fertile progeny with a partial RNAi effect. These suggest that RNAi depletion of C. elegans mtssb-1 is useful as a model system of mitochondrial dysfunction.
KW - Apoptosis
KW - DNA microarray
KW - Ethidium bromide
KW - Hypoxia response
KW - Mitochondrial dysfunction
KW - RNAi
KW - ROS
KW - mtSSB
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U2 - 10.1016/j.yexcr.2007.08.015
DO - 10.1016/j.yexcr.2007.08.015
M3 - Article
C2 - 17900564
AN - SCOPUS:36549071188
SN - 0014-4827
VL - 314
SP - 103
EP - 114
JO - Experimental Cell Research
JF - Experimental Cell Research
IS - 1
ER -