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Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals
by
Mori, Kazuhiko
, Yamamoto, Masayuki
, Nakamura, Makoto
, Katsuoka, Fumiki
, Yasuda, Jun
, Nagasaki, Masao
, Matsubara, Yoichi
, Kimura, Masae
, Hamanaka, Teruhiko
, Ikeda, Yoko
, Ishida, Nobuo
, Shimizu, Ai
, Sakai, Hiroshi
, Endo, Atsushi
, Koshiba, Seizo
, Nakazawa, Toru
, Fuse, Nobuo
in
Adolescent
/ Age
/ Child
/ Child, Preschool
/ Childhood
/ Children
/ Clinical Investigation
/ CYP1B1 gene
/ CYP1B1 protein
/ Cytochrome P-450 CYP1B1 - genetics
/ Cytoskeletal Proteins
/ DNA - genetics
/ DNA Mutational Analysis
/ East Asian People
/ Edema
/ Enzymatic activity
/ Exome Sequencing
/ Eye Proteins - genetics
/ Female
/ Forkhead Transcription Factors - genetics
/ FOXC1 gene
/ Gene sequencing
/ Genes
/ Genetic analysis
/ Genomes
/ Genomic analysis
/ Genomics
/ Glaucoma
/ Glaucoma - genetics
/ Glycoproteins
/ Heterozygotes
/ Homozygotes
/ Humans
/ Infant
/ Intraocular Pressure - physiology
/ Japan - epidemiology
/ Male
/ Medicine
/ Medicine & Public Health
/ Mutation
/ MYOC gene
/ Ophthalmology
/ Pathogenesis
/ Pedigree
/ Point mutation
/ Population genetics
/ Population studies
/ Protein structure
/ Whole genome sequencing
2024
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Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals
by
Mori, Kazuhiko
, Yamamoto, Masayuki
, Nakamura, Makoto
, Katsuoka, Fumiki
, Yasuda, Jun
, Nagasaki, Masao
, Matsubara, Yoichi
, Kimura, Masae
, Hamanaka, Teruhiko
, Ikeda, Yoko
, Ishida, Nobuo
, Shimizu, Ai
, Sakai, Hiroshi
, Endo, Atsushi
, Koshiba, Seizo
, Nakazawa, Toru
, Fuse, Nobuo
in
Adolescent
/ Age
/ Child
/ Child, Preschool
/ Childhood
/ Children
/ Clinical Investigation
/ CYP1B1 gene
/ CYP1B1 protein
/ Cytochrome P-450 CYP1B1 - genetics
/ Cytoskeletal Proteins
/ DNA - genetics
/ DNA Mutational Analysis
/ East Asian People
/ Edema
/ Enzymatic activity
/ Exome Sequencing
/ Eye Proteins - genetics
/ Female
/ Forkhead Transcription Factors - genetics
/ FOXC1 gene
/ Gene sequencing
/ Genes
/ Genetic analysis
/ Genomes
/ Genomic analysis
/ Genomics
/ Glaucoma
/ Glaucoma - genetics
/ Glycoproteins
/ Heterozygotes
/ Homozygotes
/ Humans
/ Infant
/ Intraocular Pressure - physiology
/ Japan - epidemiology
/ Male
/ Medicine
/ Medicine & Public Health
/ Mutation
/ MYOC gene
/ Ophthalmology
/ Pathogenesis
/ Pedigree
/ Point mutation
/ Population genetics
/ Population studies
/ Protein structure
/ Whole genome sequencing
2024
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Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals
by
Mori, Kazuhiko
, Yamamoto, Masayuki
, Nakamura, Makoto
, Katsuoka, Fumiki
, Yasuda, Jun
, Nagasaki, Masao
, Matsubara, Yoichi
, Kimura, Masae
, Hamanaka, Teruhiko
, Ikeda, Yoko
, Ishida, Nobuo
, Shimizu, Ai
, Sakai, Hiroshi
, Endo, Atsushi
, Koshiba, Seizo
, Nakazawa, Toru
, Fuse, Nobuo
in
Adolescent
/ Age
/ Child
/ Child, Preschool
/ Childhood
/ Children
/ Clinical Investigation
/ CYP1B1 gene
/ CYP1B1 protein
/ Cytochrome P-450 CYP1B1 - genetics
/ Cytoskeletal Proteins
/ DNA - genetics
/ DNA Mutational Analysis
/ East Asian People
/ Edema
/ Enzymatic activity
/ Exome Sequencing
/ Eye Proteins - genetics
/ Female
/ Forkhead Transcription Factors - genetics
/ FOXC1 gene
/ Gene sequencing
/ Genes
/ Genetic analysis
/ Genomes
/ Genomic analysis
/ Genomics
/ Glaucoma
/ Glaucoma - genetics
/ Glycoproteins
/ Heterozygotes
/ Homozygotes
/ Humans
/ Infant
/ Intraocular Pressure - physiology
/ Japan - epidemiology
/ Male
/ Medicine
/ Medicine & Public Health
/ Mutation
/ MYOC gene
/ Ophthalmology
/ Pathogenesis
/ Pedigree
/ Point mutation
/ Population genetics
/ Population studies
/ Protein structure
/ Whole genome sequencing
2024
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Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals
Journal Article
Mutations of CYP1B1 and FOXC1 genes for childhood glaucoma in Japanese individuals
2024
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Overview
Purpose
To explore the frequency and positions of genetic mutations in
CYP1B1
and
FOXC1
in a Japanese population.
Study design
Molecular genetic analysis.
Methods
Genomic DNA was extracted from 31 Japanese patients with childhood glaucoma (CG) from 29 families. We examined the
CYP1B
,
FOXC1
, and
MYOC
genes using Sanger sequencing and whole-exome sequencing (WES).
Results
For
CYP1B1
, we identified 9 families that harbored novel mutations, p.A202T, p.D274E, p.Q340*, and p.V420G; the remaining mutations had been previously reported. When mapped to the CYP1B1 protein structure, all mutations appeared to influence the enzymatic activity of CYP1B1 by provoking structural deformity. Five patients were homozygotes or compound heterozygotes, supporting the recessive inheritance of the
CYP1B1
mutations in CG. In contrast, four patients were heterozygous for the
CYP1B1
mutation, suggesting the presence of regulatory region mutations or strong modifiers. For the
FOXC1
gene, we identified 3 novel mutations, p.Q23fs, p.Q70R, and p.E163*, all of which were identified in a heterozygous state. No mutation was found in the
MYOC
gene in these CG patients. All individuals with
CYP1B1
and
FOXC1
mutations were severely affected by early-onset CG. In the
CYP1B1-
,
FOXC1-
, and
MYOC-
negative families, we also searched for variants in the other candidate genes reported for CG through WES, but could not find any mutations in these genes.
Conclusions
Our analyses of 29 CG families revealed 9 families with point mutations in the
CYP1B1
gene, and four of those patients appeared to be heterozygotes, suggesting the presence of complex pathogenic mechanisms.
FOXC1
appears to be another major causal gene of CG, indicating that panel sequencing of
CYP1B1
and
FOXC1
will be useful for diagnosis of CG in Japanese individuals.
Publisher
Springer Japan,Springer Nature B.V
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