Towards a paradigm shift in understanding of membrane-bound Nitric Oxide reductase and its complexes with the electron donor and NO-producing enzyme

BBSRC · United Kingdom government procurement

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

November 05, 2026
Response Due
Active
Status

Opportunity Overview

About one third to one half of all proteins are oxidation/reduction enzymes or metalloproteins. It is estimated that more than one third of all proteins in nature require metals to perform their biological roles and nearly half of all enzymes must associate with a particular metal to function. These metal ions can be either a single atom or form part of a cluster, playing a variety of life-sustaining roles in the bacterial, plant and animal kingdoms. Many enzymes exploit the oxidation states of metals to perform redox cycling during catalysis. Fundamental biological processes in which metalloproteins participate include electron storage and transfer, dioxygen binding, storage and activation, and substrate transport, catalysis and activation. In many metalloenzymes such as cytochrome c oxidase, hydrogenases, nitrogenases and nitrite reductases, catalysis involves the controlled delivery of electrons and protons to the active site where chemical substrates are utilised. These events are often coordinated, coupled and orchestrated by structural signals that remain poorly understood in many cases due to the experimental limitations, particularly membrane proteins, that require solubilization and can be difficult to crystallize. Consequently, although the number of unique structures for membrane proteins has steadily increased since the first structure of a membrane protein in 1985, which brought the Nobel prize in 1988 to Deissenhoffer, Huber and Michel, progress has been slower than predicted. However, recent advances in cryoEM has provided a major boost to structure determination of membrane proteins, catching up the target set in 1990.

This project is built on an excellent track record of collaboration and significant underpinning data including the highest resolution structure of any NOR to provide a step change in our understanding of this important membrane metalloenzyme and its complex with NO producing enzyme (AxNiR) that has been studied in our laboratory...

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 agencyBBSRC
CountryUnited Kingdom
CategoryResearch Development
PublishedNovember 06, 2023
Procurement stageActive solicitation
Response dueNovember 05, 2026
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

Going Green: reprogramming roots into shoots using TCP transcription factors
A fluid-walled microfluidic platform for human neuron microcircuits
Understanding the role of malaria red blood cell binding proteins in invasion and host specificity
The effect of stress on bee foraging behaviour
Integrating clinical, data-driven and in-vitro approaches to the study of host-pathogen interactions in bovine digital dermatitis
Does functional misfolding of TonB drive import across the outer membrane of Gram negative bacteria?
The role of a mysterious epigenetic RNA modification in adapting the eukaryotic epitranscriptome to environmental change
MEIAD: Investigating roles for Meiosis Associated Degradation during meiotic recombination in plants

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.