Conformations of musk odorants and their binding to human musk receptors

EPSRC · United Kingdom government procurement

GlobalGov surfaces government procurement from around the world, including the markets your competitors overlook.

July 30, 2027
Response Due
Active
Status

Opportunity Overview

Structure and function are intimately linked in chemical and biological systems, and understanding their relationship underpins technological progress. Knowledge of the different conformations adopted by molecules is crucial to gain insight into their chemical and biological functions. However, despite its tremendous importance, conformational analysis remains an outstanding challenge for many processes. In this project we propose a novel approach to account for conformational flexibility and apply it to the long standing question of musk-olfactory receptor (OR) interactions.

Musk odorants are key compounds in perfumery due to their distinctive sensual notes and fixatives qualities. Natural musks are macrocycles with ketone and lactone functional groups. They have been used in perfumery since the beginning of the 20th century but they were very expensive due of the difficulties in their extraction and their complex synthesis. There were thus numerous attempts to develop new compounds with similar olfactory and fixative properties, which led to the appearance of other classes of musks. Many of these were found to be toxic and environmentally harmful, and are gradually being removed from use in consumer goods. Therefore designing and developing new biodegradable musks is still of huge industrial interest.

Progress on understanding the molecular features that determine musk-OR binding and musk smell has been hampered by the lack of structural data on macrocyclic musks and musk ORs. Conformational flexibility, an important characteristic of both odorants and ORs, is a major factor. Macrocyclic musks are expected to adopt many conformations, which has prevented their analysis by traditional spectroscopic techniques. ORs are also expected to be structurally flexible. Their importance has grown over the years, since they have been found in tissues outside the nose and have been proposed as drivers of cancer.

In this project we will address the challenge of advancing...

This is one of 1,831 active United Kingdom Research Development opportunities most of your competitors will never see.

Your competitors are watching the same crowded contracts everyone else is. Track this opportunity and every one like it worldwide, set deadline alerts, and win where they aren’t. Free for 14 days, no card.

Start Free

Solicitation Details

Issuing agencyEPSRC
CountryUnited Kingdom
CategoryResearch Development
PublishedJuly 31, 2024
Procurement stageActive solicitation
Response dueJuly 30, 2027
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 12, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

Related Opportunities in United Kingdom

"Using computer vision to monitor water quality by analysing complex particulates "
Bismuth-chalcohalide solar cells
Non-linear modelling of performance limiting MHD and disruptions in spherical tokamaks
Platform Driving The Ultimate Connectivity
Probing hydrodynamics of early development using diamond quantum sensors
Deciphering Reaction Mechanisms of Biomass Upgrading over Zeolitic Materials via Advanced Nuclear Magnetic Resonance (NMR) spectroscopy
An efficient, Non-Myopic Acquisition Function for Bayesian Optimisation
Developing computational models to understand the effects of within-host viral dynamics on population-scale transmission and outcomes

See every United Kingdom Research Development opportunity your competition is missing. Free for 14 days.

Get real-time alerts, competitive intelligence, and deadline tracking for this and every market worldwide.

Start Free Trial — No Card Required

Free 14-day trial · no card required

See who is already competing here →

Get a free United Kingdom Research Development intelligence report in your inbox

A personalized report on United Kingdom Research Development opportunities, emailed in 5-10 minutes. One per month, no account needed.