TY - JOUR
T1 - Localization of a portion of extranuclear ATM to peroxisomes
AU - Watters, Dianne
AU - Kedar, Padmini
AU - Spring, Kevin
AU - Bjorkman, Jonas
AU - Chen, Phil
AU - Gatei, Magtouf
AU - Birrell, Geoff
AU - Garrone, Bernadette
AU - Srinivasa, Priyadashini
AU - Crane, Denis I.
AU - Lavin, Martin F.
PY - 1999/11/26
Y1 - 1999/11/26
N2 - The gene mutated in the human genetic disorder ataxia-telangiectasia codes for a protein, ATM, the known functions of which include response to DNA damage, cell cycle control, and meiotic recombination. Consistent with these functions, ATM is predominantly present in the nucleus of proliferating cells; however, a significant proportion of the protein has also been detected outside the nucleus in cytoplasmic vesicles. To understand the possible role of extra-nuclear ATM, we initially investigated the nature of these vesicles. In this report we demonstrate that a portion of ATM co- localizes with catalase, that ATM is present in purified mouse peroxisomes, and that there are reduced levels of ATM in the post-mitochondrial membrane fraction of cells from a patient with a peroxisome biogenesis disorder. Furthermore the use of the yeast two-hybrid system demonstrated that ATM interacts directly with a protein involved in the import of proteins into the peroxisome matrix. Because peroxisomes are major sites of oxidative metabolism, we investigated catalase activity and lipid hydroperoxide levels in normal and A-T fibroblasts. Significantly decreased catalase activity and increased lipid peroxidation was observed in several A-T cell lines. The localization of ATM to peroxisomes may contribute to the pleiotropic nature of A-T.
AB - The gene mutated in the human genetic disorder ataxia-telangiectasia codes for a protein, ATM, the known functions of which include response to DNA damage, cell cycle control, and meiotic recombination. Consistent with these functions, ATM is predominantly present in the nucleus of proliferating cells; however, a significant proportion of the protein has also been detected outside the nucleus in cytoplasmic vesicles. To understand the possible role of extra-nuclear ATM, we initially investigated the nature of these vesicles. In this report we demonstrate that a portion of ATM co- localizes with catalase, that ATM is present in purified mouse peroxisomes, and that there are reduced levels of ATM in the post-mitochondrial membrane fraction of cells from a patient with a peroxisome biogenesis disorder. Furthermore the use of the yeast two-hybrid system demonstrated that ATM interacts directly with a protein involved in the import of proteins into the peroxisome matrix. Because peroxisomes are major sites of oxidative metabolism, we investigated catalase activity and lipid hydroperoxide levels in normal and A-T fibroblasts. Significantly decreased catalase activity and increased lipid peroxidation was observed in several A-T cell lines. The localization of ATM to peroxisomes may contribute to the pleiotropic nature of A-T.
UR - http://www.scopus.com/inward/record.url?scp=0033607810&partnerID=8YFLogxK
U2 - 10.1074/jbc.274.48.34277
DO - 10.1074/jbc.274.48.34277
M3 - Article
C2 - 10567403
AN - SCOPUS:0033607810
SN - 0021-9258
VL - 274
SP - 34277
EP - 34282
JO - The Journal of Biological Chemistry
JF - The Journal of Biological Chemistry
IS - 48
ER -