Developing Photoenzymes for Selective Chemical Synthesis
About This Grant
Project Summary Photoenzymes are biological catalysts that use photonic energy to drive chemical reactions. The key intermediates in these enzymes are organic free radicals, highly reactive intermediates that can be challenging to control using small molecule catalysts. In this proposal, we will use naturally occurring dark enzymes as photoenzymes to address enantio-, regio-, and chemoselectivity challenges associated with radical organic reactions. These non-natural functions will be optimized to directed evolution to enable access to chemical structures that would be challenging to access using existing synthetic methods. In this application, we will use previously identified radical initiation methods to solve new synthetic challenges. To this end, we propose to merge ‘ene’-reductase catalyzed hydroalkylations with imine reductases to prepare saturated heterocycles bearing multiple stereocenters with excellent control over the stereochemistry of the product. In a related area of research, we will develop regioselective difluoro- and trifluoromethylation of arenes to access substitution patterns that are elusive using existing C–H functionalization strategies. We will also use Baeyer-Villager Monooxygenases as potent photoreductants to convert styrenyl alkenes to the corresponding benzylic radical for various cyclization reactions to access N-heterocyclic motifs found in biologically active molecules. Concurrently, we will develop new initiation mechanisms that will expand the types of reactivity available to photoenzymes. In this context, we will use lactate monooxygenase’s ability to form alkylated flavin adducts to facilitate Csp3-Csp3 cross-coupling reactions. This work will enable asymmetric cross-coupling and strategies for preparing congested carbons. Additionally, we will engineer ‘ene’-reductases to use oxidative mechanisms for radical initiation–a challenge because of the oxidative sensitivity of these proteins. This new initiation mechanism can interface with the existing radical termination mechanism to unlock new photoenzymatic chemical transformations. Finally, we will develop energy transfer mechanisms with pyridoxal-dependent enzymes to unlock new biocatalytic transformations. Together, these methods and the goals have the potential to streamline the synthesis of biological probes and drug targets, creating a significant benefit to human health and associated biomedical sciences.
Grant Summary
Developing Photoenzymes for Selective Chemical Synthesis is a NIGMS - National Institute of General Medical Sciences grant providing up to $165K for university, nonprofit, healthcare org. Applications are due 2031-04-30 (open). Check eligibility and apply with FindGrants.
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How to Apply
Up to $165K
2031-04-30
- 1Confirm your organization is eligible for Developing Photoenzymes for Selective Chemical Synthesis from NIGMS - National Institute of General Medical Sciences, checking organization type, location, and any population or project requirements.
- 2Gather the required documents and information, including your organization details, project plan, and budget figures.
- 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.
- 4Review every section against the requirements checklist, then export a submission-ready application pack and submit it to NIGMS - National Institute of General Medical Sciences before the deadline.
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Developing Photoenzymes for Selective Chemical Synthesis: Frequently Asked Questions
Who is eligible for the Developing Photoenzymes for Selective Chemical Synthesis?
Developing Photoenzymes for Selective Chemical Synthesis is offered by NIGMS - National Institute of General Medical Sciences 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 Developing Photoenzymes for Selective Chemical Synthesis provide?
Developing Photoenzymes for Selective Chemical Synthesis provides up to $165K per award from NIGMS - National Institute of General Medical Sciences. 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 Developing Photoenzymes for Selective Chemical Synthesis deadline?
Applications for Developing Photoenzymes for Selective Chemical Synthesis are due 2031-04-30 (open). Because deadlines can change, verify the date with the funder, NIGMS - National Institute of General Medical Sciences, and give yourself enough time to prepare a complete, competitive application before the close date.
How do you apply for the Developing Photoenzymes for Selective Chemical Synthesis?
To apply for Developing Photoenzymes for Selective Chemical Synthesis, 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 NIGMS - National Institute of General Medical Sciences.