How can snails help us understand memory formation

BBSRC · United Kingdom government procurement

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September 29, 2028
Response Due
Active
Status

Opportunity Overview

The human brain has ~86 billion neurons, and each one forms over 10,000 connections with other neurons. It is the most complicated object in the universe, and we are only scratching the surface in understanding how it works.
Within the brain's neural network, the connections known as synapses harbour a high density of proteins. These proteins assemble into precise 3D arrays that govern the transmission of information. The resolution of optical microscopy, however, is limited to ~200 nanometres due to the wave nature of light. Consequently, the application of fluorescence microscopy to visualise these protein structures is restricted. Fortunately, the emergence of super-resolution microscopy has provided us with the means to directly observe synaptic proteins in brain slices, leading to the ground-breaking discovery that proteins are organised into "nanoclusters". Moreover, these structures exhibit significant heterogeneity across the brain, challenging the previous assumption of their homogeneity.
In this project, the student will have the opportunity to develop a super-resolution probe specifically designed to target a class of neuroreceptors critical for memory formation and learning. These probes are based on neurotoxic peptides derived from the venom of marine cone snails. Notably, these probes are much smaller than conventional antibodies, enabling them to navigate the dense protein network and bind directly to the receptors. This breakthrough will not only allow us to generate high-resolution maps of synaptic proteins, but also track their movements in real-time, offering invaluable insights into the dynamic nature of the brain and cognitive processes such as memory formation at the molecular level.
The project offers a comprehensive learning experience encompassing multiple experimental techniques and analytical approaches, combining molecular biology, microscopy, coding, and electrophysiology. The student will have a valuable hands-on experience...

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Solicitation Details

Issuing agencyBBSRC
CountryUnited Kingdom
CategoryResearch Development
PublishedSeptember 30, 2024
Procurement stageActive solicitation
Response dueSeptember 29, 2028
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 09, 2026

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

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