TNFα-dependent modulation of WT1-MMP9 regulatory axis links developmental and inflammatory pathways in glaucoma

Glaucomas are heterogeneous optic neuropathies associated with extracellular matrix dysregulation, abnormal ocular morphogenesis, and inflammatory signaling. Targeted deep sequencing of 586 primary congenital glaucoma (PCG) cases and 1,757 controls identified rare pathogenic variants in multiple genes, including WT1 and MMP9 . Notably, WT1 variants clustered within the nuclear export sequence. Further, functional analyses showed that combined wt1 - pax6 suppression in zebrafish disrupted ocular morphogenesis, highlighting developmental interdependence. In human trabecular meshwork cells, WT1 acted as a transcriptional repressor of MMP9 , while TNF-α signaling triggered nitric oxide-dependent nuclear export of WT1, resulting in delayed MMP9 upregulation. This effect was reversible by inhibiting nuclear export or nitric oxide synthase. A patient-derived mutation in the nuclear-export region of WT1, disrupted this regulatory switch, causing abnormal MMP9 expression. These findings position WT1 as an important regulator linking developmental and inflammatory mechanisms in glaucoma pathogenesis.

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Journal
iScience
Published
2026-08-25
DOI
https://doi.org/10.1016/j.isci.2026.117176
Primary Topic
Glaucoma and retinal disorders
Type
article
Field-Weighted Citation Impact
0.00

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article

TNFα-dependent modulation of WT1-MMP9 regulatory axis links developmental and inflammatory pathways in glaucoma

Subhabrata Chakrabarti, Mahua Maulik, Goutham Pyatla, Shantanu Saha Roy et al.
iScience
Glaucoma and retinal disorders
article

TNFα-dependent modulation of WT1-MMP9 regulatory axis links developmental and inflammatory pathways in glaucoma

Subhabrata Chakrabarti, Mahua Maulik, Goutham Pyatla, Shantanu Saha Roy, Sayani Bagchi, Moulinath Acharya, Rohit Khanna, Tahseen Ahmed, Samir Bera, Jyotishman Sarma, Anil K. Mandal, Meha Kabra, Sudipta Chakraborty, Arun Kumar Mishra, Diganta Roy, Ashish Mishra
article en

Abstract

Glaucomas are heterogeneous optic neuropathies associated with extracellular matrix dysregulation, abnormal ocular morphogenesis, and inflammatory signaling. Targeted deep sequencing of 586 primary congenital glaucoma (PCG) cases and 1,757 controls identified rare pathogenic variants in multiple genes, including WT1 and MMP9 . Notably, WT1 variants clustered within the nuclear export sequence. Further, functional analyses showed that combined wt1 - pax6 suppression in zebrafish disrupted ocular morphogenesis, highlighting developmental interdependence. In human trabecular meshwork cells, WT1 acted as a transcriptional repressor of MMP9 , while TNF-α signaling triggered nitric oxide-dependent nuclear export of WT1, resulting in delayed MMP9 upregulation. This effect was reversible by inhibiting nuclear export or nitric oxide synthase. A patient-derived mutation in the nuclear-export region of WT1, disrupted this regulatory switch, causing abnormal MMP9 expression. These findings position WT1 as an important regulator linking developmental and inflammatory mechanisms in glaucoma pathogenesis.

iScienceVol. 29(9)
Manipal Academy of Higher Education (IN), L V Prasad Eye Institute (IN), Regional Centre for Biotechnology (IN), National Institute of Biomedical Genomics (IN)
Indian Council of Medical Research, Science and Engineering Research Board
Zero hunger
Openalex Percentile: Top 8%
Glaucoma and retinal disorders
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