Post

New research · Ophthalmology
Research square · 4d
StudyResearch square · 2026

Missense variants in KATNA1 alter microtubule dynamics and underlie dominant macular dystrophy.

Karolina Kaminska, Abigail R Moye, Mathieu Quinodoz … Carlo Rivolta
Read paper
OphthalmologyStudy

KATNA1 gene variants may explain about 4% of unresolved macular dystrophy cases.

Missense variants in KATNA1 alter microtubule dynamics and underlie dominant macular dystrophy.

Karolina Kaminska … Carlo Rivolta
Research square · 2026
Background

Inherited retinal diseases (inherited retinal diseases) encompass a broad spectrum of genetic conditions leading to visual impairment.

Results
~4%
gene defect confirmed in a small but real share of unexplained cases
n = 21 individuals
More results

In this study, we identify KATNA1 , encoding the catalytic p60 subunit of the microtubule-severing enzyme katanin, as a previously unrecognized cause of autosomal dominant macular dystrophy (adMD), a form of inherited retinal diseases.

More results

Specifically, we could ascertain the presence of 10 heterozygous missense changes affecting six conserved amino acids in 21 individuals from 16 unrelated families from various parts of the world, all presenting with non-syndromic MD of variable severity.

“
Conclusion

Together, these results establish KATNA1 as a novel gene associated with adMD, possibly accounting for ~4% of all unresolved MD cases, and associate defective microtubule severing and cytoskeletal dysregulation with macular degeneration.

Read paper
0 comments

No comments yet. Be the first.

Related papers

LatestFoundational
Cross-sectional
44.1%
had too much homocysteine in the blood, a far larger share than in dry AMD or healthy eyes
Cohort Study
92.3%
most laser-treated eyes had a favorable eye-structure outcome
Cohort Study
56%
lost three or more lines on the eye-chart vision test
Cohort Study
50%
older patients were more likely to lose three or more lines of vision
Study
81%
trials where mask air leaks were detected blowing toward the eyes
Cohort Study
13.5%
Central retinal artery peak blood-flow speed was 13.5% lower in diabetic patients.
Study
379 +/- 156 microm
lower thickness in the central retina, checked with an eye scan
Case Report
9 of 10 eyes
eyes had better measured vision after treatment