4.8 Article

mGRASP enables mapping mammalian synaptic connectivity with light microscopy

Journal

NATURE METHODS
Volume 9, Issue 1, Pages 96-U139

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/NMETH.1784

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Funding

  1. Howard Hughes Medical Institute, US National Institute on Deafness and other Communication Disorders
  2. World Class Institute of National Research Foundation of Korea
  3. Ministry of Education, Science and Technology of Korea
  4. National Research Foundation of Korea [WCI 2009-003] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The GFP reconstitution across synaptic partners (GRASP) technique, based on functional complementation between two nonfluorescent GFP fragments, can be used to detect the location of synapses quickly, accurately and with high spatial resolution. The method has been previously applied in the nematode and the fruit fly but requires substantial modification for use in the mammalian brain. We developed mammalian GRASP (mGRASP) by optimizing transmembrane split-GFP carriers for mammalian synapses. Using in silico protein design, we engineered chimeric synaptic mGRASP fragments that were efficiently delivered to synaptic locations and reconstituted GFP fluorescence in vivo. Furthermore, by integrating molecular and cellular approaches with a computational strategy for the three-dimensional reconstruction of neurons, we applied mGRASP to both long-range circuits and local microcircuits in the mouse hippocampus and thalamocortical regions, analyzing synaptic distribution in single neurons and in dendritic compartments.

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