A novel missense TGFBI variant p.(Ser591Phe) in a Finnish family with variant lattice corneal dystrophy

2021 ◽  
pp. 112067212199730
Author(s):  
Aino Maaria Jaakkola ◽  
Petri J Järventausta ◽  
Reetta-Stiina Järvinen ◽  
Pauliina Repo ◽  
Tero T Kivelä ◽  
...  

Introduction: We describe the phenotype of a variant lattice corneal dystrophy (LCD) potentially caused by a novel variant c.1772C>T p.(Ser591Phe) in exon 13 of the transforming growth factor beta-induced (TGFBI) gene. Case report: The proband, a 71-year-old woman referred because of bilateral LCD, first seen at the age of 65 years, with recent progressive symptoms, underwent a clinical ophthalmological examination, anterior segment optical coherence tomography and confocal microscopy. Additionally, three siblings and three children were examined. The identified TGFBI variant was screened in six family members using Sanger sequencing. A corneal dystrophy gene screen was performed for the proband. Translucent subepithelial irregularities and central to midperipheral stubby branching corneal stromal lattice lines, asymmetric between the right and the left eye, were visible and resulted in mild deterioration of vision in one eye. Genetic testing revealed a novel variant c.1772C>T in TGFBI, leading to the amino acid change p.(Ser591Phe). One daughter carried the same variant but had only thick stromal nerve fibres at the age of 49 years. The other family members neither had corneal abnormalities nor carried the variant. No keratoplasty is yet planned for the proband. Conclusions: We classify the novel variant in TGFBI as possibly pathogenic, potentially causing the late-onset, asymmetric variant LCD. Our findings add to the growing number of TGFBI variants associated with a spectrum of phenotypes of variant LCD.

2019 ◽  
Vol 47 (7) ◽  
pp. 871-880
Author(s):  
Ezequiel Campos‐Mollo ◽  
Yago Varela‐Conde ◽  
Pedro Arriola‐Villalobos ◽  
Rubén Cabrera‐Beyrouti ◽  
José‐Manuel Benítez‐del‐Castillo ◽  
...  

Cornea ◽  
2014 ◽  
Vol 33 (3) ◽  
pp. 294-299 ◽  
Author(s):  
Monika Ołdak ◽  
Jacek P. Szaflik ◽  
Aneta Ścieżyńska ◽  
Monika Udziela ◽  
Radosław B. Maksym ◽  
...  

2007 ◽  
Vol 144 (3) ◽  
pp. 473-475 ◽  
Author(s):  
Xin Tian ◽  
Keiko Fujiki ◽  
Yan Zhang ◽  
Akira Murakami ◽  
Qin Li ◽  
...  

2021 ◽  
Vol 22 (3) ◽  
pp. 1230
Author(s):  
Sang Beom Han ◽  
Venkatraman Anandalakshmi ◽  
Chee Wai Wong ◽  
Si Rui Ng ◽  
Jodhbir S. Mehta

Background: To evaluate the distribution of the transforming growth factor-beta induced (TGFBI) corneal dystrophies in a multi-ethnic population in Singapore, and to present the different phenotypes with the same genotype. Methods: This study included 32 patients. Slit lamp biomicroscopy was performed for each patient to determine the disease phenotype. Genomic DNA was extracted from the blood samples and the 17 exons of the TGFBI gene were amplified by PCR and sequenced bi-directionally for genotype analysis. Results: Regarding phenotypes, the study patients comprised 11 (34.4%; 8 with R555W and 3 with R124H mutation) patients with granular corneal dystrophy type 1 (GCD1), 6 (18.8%; 5 with R124H and 1 with R124C mutation) patients with GCD2, 13 (40.6%; 7 with R124C, 2 with H626R, 2 with L550P, 1 with A620D and 1 with H572R) patients with lattice corneal dystrophy (LCD) and 2 (6.3%; 1 with R124L and 1 with R124C) patients with Reis–Bückler corneal dystrophy. Regarding genotype, R124H mutation was associated with GCD2 (5 cases; 62.5%) and GCD1 (3 cases; 37.5%). R124C mutation was associated with LCD (7 cases; 87.5%) and GCD2 (1 case; 12.5%). All the 8 cases (100%) of R555W mutation were associated with GCD1. Conclusions: Although the association between genotype and phenotype was good in most cases (65.7%; 21 of 32 patients), genotype/phenotype discrepancy was observed in a significant number.


2012 ◽  
Vol 40 (3) ◽  
pp. 1149-1155 ◽  
Author(s):  
Mz Piao ◽  
Xt Zhou ◽  
Lc Wu ◽  
Ry Chu

OBJECTIVE: Mutations of the transforming growth factor β-induced ( TGFBI) gene were studied in a Chinese family with Reis—Bücklers corneal dystrophy (RBCD). METHODS: Six family members with RBCD and six unaffected family members were investigated. The pedigree showed a typical dominant inheritance pattern. Genomic DNA was extracted from peripheral leucocytes from all study participants. Exons 4, 12 and 14 of the TGFBI gene were analysed using polymerase chain reaction, and standard automated sequencing was performed. Corneal tissue sampled from the proband during phototherapeutic keratectomy was examined using transmission electron microscopy (TEM). RESULTS: A typical geographical pattern of fine opacities in Bowman's layer of the cornea was seen in all six patients on slit-lamp examination. An Arg555Gln (R555Q) mutation of the TGFBI gene was identified in all six patients but was absent in all unaffected family members. TEM revealed rod-shaped bodies in Bowman's layer of the cornea. CONCLUSIONS: In this Chinese family an R555Q mutation of the TGFBI gene was associated with RBCD. As the RBCD phenotype is usually associated with an R124L mutation, this novel genotype—phenotype correlation may prompt further investigation of Bowman's layer corneal dystrophy.


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