volume 70 issue 4 pages 199-205

Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping

Norihiro SHIMIZU 1, 2
Yoichi Mashimo 3
Hirotaka YOKOUCHI 1, 4
Yosuke Nishio 5, 6
Setsu Sawai 7, 8
Tomohiko Ichikawa 8, 9
Tomoo Ogi 6, 10, 11, 12
Takayuki Baba 1
Yoshihiro Onouchi 3, 8
Publication typeJournal Article
Publication date2025-02-13
scimago Q2
wos Q2
SJR1.012
CiteScore6.2
Impact factor2.5
ISSN14345161, 1435232X
Abstract

Mutations in fibrillin-1 (FBN1) cause various clinical conditions, such as Marfan syndrome (MFS). However, the genotype–phenotype relationships underlying MFS and other conditions relevant to FBN1 mutations have not been fully elucidated. We performed whole-exome sequencing on three participants, including an affected mother–daughter pair, in a three-generation Japanese family with isolated ectopia lentis (IEL). The sequencing identified a novel single-nucleotide variant (c.1327+3A>C) in intron 11 of FBN1 that was shared between the two patients. We confirmed the co-segregation of the variant with IEL in two additional affected relatives in the family. The Combined Annotation-Dependent Depletion score of the variant was 26.1, which was indicated by SpliceAI to influence splicing, with a score of 0.93. Reverse transcription-polymerase chain reaction (RT-PCR) of mRNAs isolated from peripheral blood mononuclear cells revealed aberrant bands in all four affected individuals. Subsequent sequencing revealed that these bands originated from FBN1 transcripts lacking exon 11. The causality of the variant in the skipping of exon 11, which results in an in-frame deletion of 60 amino acids corresponding to the “hinge” region of FBN1 protein, was confirmed in a minigene experiment. Interestingly, the same result was observed for a minigene for c.1327+1G>A, a variant previously identified in two unrelated EL families without MFS manifestations. These results suggest that the c.1327+3A>C mutation in FBN1 likely leads to IEL. The findings expand our knowledge of FBN1 and provide insights into FBN1-related diseases.

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SHIMIZU N. et al. Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping // Journal of Human Genetics. 2025. Vol. 70. No. 4. pp. 199-205.
GOST all authors (up to 50) Copy
SHIMIZU N., Mashimo Y., YOKOUCHI H., Nishio Y., Sawai S., Ichikawa T., Ogi T., Baba T., Onouchi Y. Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping // Journal of Human Genetics. 2025. Vol. 70. No. 4. pp. 199-205.
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TY - JOUR
DO - 10.1038/s10038-025-01318-0
UR - https://www.nature.com/articles/s10038-025-01318-0
TI - Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping
T2 - Journal of Human Genetics
AU - SHIMIZU, Norihiro
AU - Mashimo, Yoichi
AU - YOKOUCHI, Hirotaka
AU - Nishio, Yosuke
AU - Sawai, Setsu
AU - Ichikawa, Tomohiko
AU - Ogi, Tomoo
AU - Baba, Takayuki
AU - Onouchi, Yoshihiro
PY - 2025
DA - 2025/02/13
PB - Springer Nature
SP - 199-205
IS - 4
VL - 70
SN - 1434-5161
SN - 1435-232X
ER -
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@article{2025_SHIMIZU,
author = {Norihiro SHIMIZU and Yoichi Mashimo and Hirotaka YOKOUCHI and Yosuke Nishio and Setsu Sawai and Tomohiko Ichikawa and Tomoo Ogi and Takayuki Baba and Yoshihiro Onouchi},
title = {Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping},
journal = {Journal of Human Genetics},
year = {2025},
volume = {70},
publisher = {Springer Nature},
month = {feb},
url = {https://www.nature.com/articles/s10038-025-01318-0},
number = {4},
pages = {199--205},
doi = {10.1038/s10038-025-01318-0}
}
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SHIMIZU, Norihiro, et al. “Novel FBN1 intron variant causes isolated ectopia lentis via in-frame exon skipping.” Journal of Human Genetics, vol. 70, no. 4, Feb. 2025, pp. 199-205. https://www.nature.com/articles/s10038-025-01318-0.