TY - JOUR
T1 - Mutations in novel peroxin gene PEX26 that cause peroxisome-biogenesis disorders of complementation group 8 provide a genotype-phenotype correlation
AU - Matsumoto, Naomi
AU - Tamura, Shigehiko
AU - Furuki, Satomi
AU - Miyata, Non
AU - Moser, Ann
AU - Shimozawa, Nobuyuki
AU - Moser, Hugo W.
AU - Suzuki, Yasuyuki
AU - Kondo, Naomi
AU - Fujiki, Yukio
N1 - Funding Information:
We thank M. Obo, S. Okuno, and M. Okubo, for technical assistance; R. Tanaka, for preparing figures; and the other members of the Fujiki laboratory, for discussion. This work was supported, in part, by a SORST (Solution-Oriented Research for Science and Technology) grant (to Y.F.) from the Science and Technology Corporation of Japan; Grants-in-Aid for Scientific Research (12308033, 12557017, 12206069, 13206060, 14037253, 15032242, and 15207014 [all to Y.F.]), Grant of National Project on Protein Structural and Functional Analyses (to Y.F.), and the 21st Century COE Program, from the Ministry of Education, Culture, Sports, Science, and Technology of Japan; a grant from Uehara Memorial Foundation; a grant from Japan Foundation for Applied Enzymology; a grant (to S.T.) from Naito Foundation; and National Institutes of Health grant RR 00052 (to H.W.M.).
PY - 2003/8/1
Y1 - 2003/8/1
N2 - The human disorders of peroxisome biogenesis (PBDs) are subdivided into 12 complementation groups (CGs). CG8 is one of the more common of these and is associated with varying phenotypes, ranging from the most severe, Zellweger syndrome (ZS), to the milder neonatal adrenoleukodystrophy (NALD) and infantile Refsum disease (IRD). PEX26, encoding the 305-amino-acid membrane peroxin, has been shown to be deficient in CG8. We studied the PEX26 genotype in fibroblasts of eight CG8 patients - four with the ZS phenotype, two with NALD, and two with IRD. Catalase was mostly cytosolic in all these cell lines, but import of the proteins that contained PTS1, the SKL peroxisome targeting sequence, was normal. Expression of PEX26 reestablished peroxisomes in all eight cell lines, confirming that PEX26 defects are pathogenic in CG8 patients. When cells were cultured at 30°C, catalase import was restored in the cell lines from patients with the NALD and IRD phenotypes, but to a much lesser extent in those with the ZS phenotype, indicating that temperature sensitivity varied inversely with the severity of the clinical phenotype. Several types of mutations were identified, including homozygous G89R mutations in two patients with ZS. Expression of these PEX26 mutations in pex26 Chinese hamster ovary cells resulted in cell phenotypes similar to those in the human cell lines. These findings confirm that the degree of temperature sensitivity in pex26 cell lines is predictive of the clinical phenotype in patients with PEX26 deficiency.
AB - The human disorders of peroxisome biogenesis (PBDs) are subdivided into 12 complementation groups (CGs). CG8 is one of the more common of these and is associated with varying phenotypes, ranging from the most severe, Zellweger syndrome (ZS), to the milder neonatal adrenoleukodystrophy (NALD) and infantile Refsum disease (IRD). PEX26, encoding the 305-amino-acid membrane peroxin, has been shown to be deficient in CG8. We studied the PEX26 genotype in fibroblasts of eight CG8 patients - four with the ZS phenotype, two with NALD, and two with IRD. Catalase was mostly cytosolic in all these cell lines, but import of the proteins that contained PTS1, the SKL peroxisome targeting sequence, was normal. Expression of PEX26 reestablished peroxisomes in all eight cell lines, confirming that PEX26 defects are pathogenic in CG8 patients. When cells were cultured at 30°C, catalase import was restored in the cell lines from patients with the NALD and IRD phenotypes, but to a much lesser extent in those with the ZS phenotype, indicating that temperature sensitivity varied inversely with the severity of the clinical phenotype. Several types of mutations were identified, including homozygous G89R mutations in two patients with ZS. Expression of these PEX26 mutations in pex26 Chinese hamster ovary cells resulted in cell phenotypes similar to those in the human cell lines. These findings confirm that the degree of temperature sensitivity in pex26 cell lines is predictive of the clinical phenotype in patients with PEX26 deficiency.
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U2 - 10.1086/377004
DO - 10.1086/377004
M3 - Article
C2 - 12851857
AN - SCOPUS:0043167793
SN - 0002-9297
VL - 73
SP - 233
EP - 246
JO - American journal of human genetics
JF - American journal of human genetics
IS - 2
ER -