Fluorescence resonance energy transfer reports properties of syntaxin1a interaction with Munc18-1 in vivo.

Jiang Liu, Stephen A Ernst, Svetlana E Gladycheva, Yue Ying F Lee, Stephen I Lentz, Chi S Ho, Quanwen Li, Edward L Stuenkel
Author Information
  1. Jiang Liu: Department of Molecular and Integrative Physiology, The Medical School, University of Michigan, 7808 Medical Sciences II Building, Ann Arbor, MI 48109, USA.

Abstract

Syntaxin1A, a neural-specific N-ethylmaleimide-sensitive factor attachment protein receptor protein essential to neurotransmitter release, in isolation forms a closed conformation with an N-terminal alpha-helix bundle folded upon the SNARE motif (H3 domain), thereby limiting interaction of the H3 domain with cognate SNAREs. Munc18-1, a neural-specific member of the Sec1/Munc18 protein family, binds to syntaxin1A, stabilizing this closed conformation. We used fluorescence resonance energy transfer (FRET) to characterize the Munc18-1/syntaxin1A interaction in intact cells. Enhanced cyan fluorescent protein-Munc18-1 and a citrine variant of enhanced yellow fluorescent protein-syntaxin1A, or mutants of these proteins, were expressed as donor and acceptor pairs in human embryonic kidney HEK293-S3 and adrenal chromaffin cells. Apparent FRET efficiency was measured using two independent approaches with complementary results that unambiguously verified FRET and provided a spatial map of FRET efficiency. In addition, enhanced cyan fluorescent protein-Munc18-1 and a citrine variant of enhanced yellow fluorescent protein-syntaxin1A colocalized with a Golgi marker and exhibited FRET at early expression times, whereas a strong plasma membrane colocalization, with similar FRET values, was apparent at later times. Trafficking of syntaxin1A to the plasma membrane was dependent on the presence of Munc18-1. Both syntaxin1A(L165A/E166A), a constitutively open conformation mutant, and syntaxin1A(I233A), an H3 domain point mutant, demonstrated apparent FRET efficiency that was reduced approximately 70% from control. In contrast, the H3 domain mutant syntaxin1A(I209A) had no effect. By using phosphomimetic mutants of Munc18-1, we also established that Ser-313, a Munc18-1 protein kinase C phosphorylation site, and Thr-574, a cyclin-dependent kinase 5 phosphorylation site, regulate Munc18-1/syntaxin1A interaction in HEK293-S3 and chromaffin cells. We conclude that FRET imaging in living cells may allow correlated regulation of Munc18-1/syntaxin1A interactions to Ca(2+)-regulated secretory events.

Grants

  1. NS 39914/NINDS NIH HHS

MeSH Term

Animals
Antigens, Surface
Bacterial Proteins
Calcium
Calcium Channels
Cell Line
Cell Membrane
Chromaffin Cells
Dose-Response Relationship, Drug
Electrophysiology
Fluorescence Resonance Energy Transfer
Golgi Apparatus
Green Fluorescent Proteins
Humans
Image Processing, Computer-Assisted
Immunohistochemistry
Luminescent Proteins
Mice
Microscopy, Confocal
Microscopy, Fluorescence
Munc18 Proteins
Mutation
Nerve Tissue Proteins
Neurons
Protein Binding
Protein Conformation
Protein Kinase C
Protein Structure, Tertiary
Rats
Syntaxin 1
Transfection
Vesicular Transport Proteins

Chemicals

Antigens, Surface
Bacterial Proteins
Calcium Channels
Cyan Fluorescent Protein
Luminescent Proteins
Munc18 Proteins
Nerve Tissue Proteins
STXBP1 protein, human
Stxbp1 protein, mouse
Stxbp1 protein, rat
Syntaxin 1
Vesicular Transport Proteins
yellow fluorescent protein, Bacteria
Green Fluorescent Proteins
Protein Kinase C
Calcium

Word Cloud

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