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Cellular mechanisms of MYO7A in the retina

NEI - National Eye Institute

open
OpenLast verified: 2026-06-18

About This Grant

PROJECT SUMMARY / ABSTRACT Proposed experiments in this multiple-PI application address the retinal functions of MYO7A, which when mutated causes Usher syndrome 1B. Individuals with USH1B are congenitally deaf, have vestibular deficiencies, and develop progressive photoceptor degeneration. Previous studies have focused on the hearing and vestibular phenotypes of USH1B, as these are modeled by the mouse Myo7A knock-out. The knock-out mice also show Retinal Pigment Epithelium (RPE) dysfunction including defects in melanosome motility and localization, as well as impaired phagocytosis of photoreceptor outer segments. It also has a photoreceptor phenotype but does not develop photoreceptor degeneration. Here we provide novel observations that RPE in multiple species show severe cell junction abnormalities. We also show evidence that myo7ab mutations in zebrafish not only have RPE defects, but also develop progressive photoreceptor degeneration. Thus, we define the first experimental model of USH1B to model vision loss. A third important observation is that retinal MYO7A in both mammals and zebrafish express splice variants that affect the MyTH4-FERM domain, a well characterized cargo binding domain of the actin-based motor protein. Leveraging the complimentary expertises of the two PIs, as well as multiple complimentary experimental models (USH1B patient derived RPE cells, Myo7a-mutant mice and pigs, and myo7ab zebrafish mutants), two Aims address the mechanisms underlying cell junction dysfunction, the role of each MYO7A isoform, and the ability of either MyTH4-FERM variant to prevent USH1B pathologies, including photoreceptor loss, when they are re-expressed in relevant retinal cell types. Findings from this project will provide fundamental knowledge of basic cellular functions of MYO7A, and its variants expressed within the retina, including potential cell- autonomous and non-cell-autonomous roles in photoreceptor health. From a clinical relevance perspective, results can shape future gene augmentation therapies, including what are the important MYO7A isoforms and what are the critical cell types to target in order to slow or prevent photoreceptor degeneration.

Grant Summary

Cellular mechanisms of MYO7A in the retina is a NEI - National Eye Institute grant providing up to $591K for university, nonprofit, healthcare org. Applications are due 2030-03-31 (open). Check eligibility and apply with FindGrants.

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Focus Areas

health research

Eligibility

universitynonprofithealthcare org

How to Apply

Funding Range

Up to $591K

Deadline

2030-03-31

Complexity
High
  1. 1Confirm your organization is eligible for Cellular mechanisms of MYO7A in the retina from NEI - National Eye Institute, checking organization type, location, and any population or project requirements.
  2. 2Gather the required documents and information, including your organization details, project plan, and budget figures.
  3. 3Draft your application narrative and budget addressing the funder's priorities and review criteria. FindGrants can draft each section for you to review and edit.
  4. 4Review every section against the requirements checklist, then export a submission-ready application pack and submit it to NEI - National Eye Institute before the deadline.
This record is a past award, contract, or funder profile — useful for research, but not an open grant application. Check the original source for current opportunities from this funder.

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Cellular mechanisms of MYO7A in the retina: Frequently Asked Questions

Who is eligible for the Cellular mechanisms of MYO7A in the retina?

Cellular mechanisms of MYO7A in the retina is offered by NEI - National Eye Institute and is generally open to university, nonprofit, healthcare org. It is open to organizations nationwide unless the funder specifies otherwise. Review the specific eligibility terms before applying, since funders set their own requirements around organization type, location, and the population or project being served.

How much funding does the Cellular mechanisms of MYO7A in the retina provide?

Cellular mechanisms of MYO7A in the retina provides up to $591K per award from NEI - National Eye Institute. Actual award sizes depend on the scope of your project, available program funds, and the number of applicants, so build a budget that reflects realistic, allowable costs rather than the maximum figure.

When is the Cellular mechanisms of MYO7A in the retina deadline?

Applications for Cellular mechanisms of MYO7A in the retina are due 2030-03-31 (open). Because deadlines can change, verify the date with the funder, NEI - National Eye Institute, and give yourself enough time to prepare a complete, competitive application before the close date.

How do you apply for the Cellular mechanisms of MYO7A in the retina?

To apply for Cellular mechanisms of MYO7A in the retina, confirm your eligibility, gather the required documents, and prepare a narrative and budget that address the funder's priorities. FindGrants guides you step by step and can draft each section, then exports a submission-ready application pack for this grant from NEI - National Eye Institute.