bioRxiv · 10.1101/2022.01.02.474742
Design Maps of TRPM8 as a Thermometer for Cold Detection
Abstract
The menthol sensor TRPM8 can be activated by cold and thus serves as a biothermometer in a primary afferent sensory neuron for innocuous-to-noxious cold detection. However, the precise structural origins of specific temperature thresholds and sensitivity have remained elusive. Here, a grid thermodynamic model was employed to examine if the temperature-dependent noncovalent interactions found in the 3D structures of thermo-gated TRPM8 could assemble into a well-organized fluidic grid-like mesh network, featuring the constrained grids as the thermorings for cold-sensing in response to PIP2, Ca2+ and chemical agents. The results showed that the different interactions of TRPM8 with PIP2 during the thermal incubation induced the formation of the biggest grids with distinct melting temperature threshold ranges. Further, the overlapped threshold ranges between open and pre-open closed states were required for initial cold activation with the matched thermo-sensitivity and the decrease in the systematic thermal instability. Finally, the intact anchor grid near the lower gate was important for channel opening with the active selectivity filter. Thus, PIP2-dependent thermorings in TRPM8 may play a pivotal role in cold sensing. (176 words)
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Wang, G.. 2022-01-03. Design Maps of TRPM8 as a Thermometer for Cold Detection. https://doi.org/10.1101/2022.01.02.474742
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