TY - JOUR
T1 - Mutation in PEX16 is causal in the peroxisome-deficient Zellweger syndrome of complementation group D
AU - Honsho, Masanori
AU - Tamura, Shigehiko
AU - Shimozawa, Nobuyuki
AU - Suzuki, Yasuyuki
AU - Kondo, Naomi
AU - Fujiki, Yukio
N1 - Funding Information:
We thank T. Sakaguchi and N. Matsumoto, for technical assistance, and the members of the Fujiki laboratory, for comments. This work was supported in part by a CREST grant from the Japan Science and Technology Corporation and by grant-in-aid for scientific research 08557011 from The Ministry of Education, Science, Sports, and Culture (both to Y.F.).
PY - 1998
Y1 - 1998
N2 - Peroxisome-biogenesis disorders (PBDs), including Zellweger syndrome (ZS), are autosomal recessive diseases caused by a deficiency in peroxisome assembly as well as by a malfunction of peroxisomes, among which >10 genotypes have been identified. We have isolated a human PEX16 cDNA (HsPEX16) by performing an expressed-sequence-tag homology search on a human DNA database, by using yeast PEX16 from Yarrowia lipolytica and then screening the human liver cDNA library. This cDNA encodes a peroxisomal protein (a peroxin Pex16p) made up of 336 amino acids. Among 13 peroxisome-deficiency complementation groups (CGs), HsPEX16 expression morphologically and biochemically restored peroxisome biogenesis only in fibroblasts from a CG-D patient with ZS in Japan (the same group as CG-IX in the United States). Pex16p was localized to peroxisomes through expression study of epitope- tagged Pex16p. One patient (PBDD-01) possessed a homozygous, inactivating nonsense mutation, C→T at position 526 in a codon (CGA) for 176 Arg, that resulted in a termination codon (TGA). This implies that the C-terminal half is required for the biological function of Pex16p. PBDD-01-derived PEX16 cDNA was defective in peroxisome-restoring activity when expressed in the patient's fibroblasts. These results demonstrate that mutation in PEX16 is the genetic cause of CG-D PBDs.
AB - Peroxisome-biogenesis disorders (PBDs), including Zellweger syndrome (ZS), are autosomal recessive diseases caused by a deficiency in peroxisome assembly as well as by a malfunction of peroxisomes, among which >10 genotypes have been identified. We have isolated a human PEX16 cDNA (HsPEX16) by performing an expressed-sequence-tag homology search on a human DNA database, by using yeast PEX16 from Yarrowia lipolytica and then screening the human liver cDNA library. This cDNA encodes a peroxisomal protein (a peroxin Pex16p) made up of 336 amino acids. Among 13 peroxisome-deficiency complementation groups (CGs), HsPEX16 expression morphologically and biochemically restored peroxisome biogenesis only in fibroblasts from a CG-D patient with ZS in Japan (the same group as CG-IX in the United States). Pex16p was localized to peroxisomes through expression study of epitope- tagged Pex16p. One patient (PBDD-01) possessed a homozygous, inactivating nonsense mutation, C→T at position 526 in a codon (CGA) for 176 Arg, that resulted in a termination codon (TGA). This implies that the C-terminal half is required for the biological function of Pex16p. PBDD-01-derived PEX16 cDNA was defective in peroxisome-restoring activity when expressed in the patient's fibroblasts. These results demonstrate that mutation in PEX16 is the genetic cause of CG-D PBDs.
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U2 - 10.1086/302161
DO - 10.1086/302161
M3 - Article
C2 - 9837814
AN - SCOPUS:0032471611
SN - 0002-9297
VL - 63
SP - 1622
EP - 1630
JO - American journal of human genetics
JF - American journal of human genetics
IS - 6
ER -