4.7 Article

Interspecies complementation identifies a pathway to assemble SNAREs

期刊

ISCIENCE
卷 25, 期 7, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.isci.2022.104506

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资金

  1. NeuroNex NSF [NSF 2014862]
  2. Howard Hughes Medical Institute
  3. NIH [NS034307]

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This study investigates the functional interactions within the core machinery of Unc18 and SNARE proteins. It reveals two key interfaces, Habc-Unc18 contact site and Unc18-SNARE motif contact site, that are essential for synaptic transmission. Moreover, the study demonstrates that the SNARE and Unc18 machinery in C. elegans can be replaced by yeast proteins while still maintaining synaptic transmission, indicating deep evolutionary conservation of these two interfaces.
Unc18 and SNARE proteins form the core of the membrane fusion complex at synapses. To understand the functional interactions within the core machinery, we adopted an interspecies complementation approach in Caenorhabditis elegans. Substitutions of individual SNAREs and Unc18 proteins with those from yeast fail to rescue fusion. However, synaptic transmission could be restored in worm-yeast chimeras when two key interfaces were present: an Habc-Unc18 contact site and an Unc18-SNARE motif contact site. A constitutively open form of Unc18 bypasses the requirement for the Habc-Unc18 interface. These data suggest that the Habc domain of syntaxin is required for Unc18 to adopt an open conformation; open Unc18 then templates SNARE complex formation. Finally, we demonstrate that the SNARE and Unc18 machinery in the nematode C. elegans can be replaced by yeast proteins and still carry out synaptic transmission, pointing to the deep evolutionary conservation of these two interfaces.

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