SNARE complex regulation by phosphorylation.

Cell Biochem Biophys

Department of Physiology and Developmental Biology, Brigham Young University, 574 WIDB, Provo, UT 84602, USA.

Published: July 2006

SNAREs (soluble N-ethylmaleimide-sensitive fusion factor attachment protein receptors) are ubiquitous proteins that direct vesicular trafficking and exocytosis. In neurons, SNAREs act to mediate release of neurotransmitters, which is a carefully regulated process. Calcium influx has long been shown to be the key trigger of release. However, calcium alone cannot regulate the degree of vesicle content release. For example, only a limited number of docked vesicles releases neurotransmitters when calcium entry occurs; this suggests that exocytosis is regulated by other factors besides calcium influx. Regulation of the degree of release is best explained by looking at the many enzymatic proteins that interact with the SNARE complex. These proteins have been hypothesized to regulate the formation, stability, or disassembly of the SNARE complex and therefore may regulate neurotransmitter release. One group of enzymatic regulators is the protein kinases. These proteins phosphorylate sites on both SNARE proteins and proteins that interact with SNARE proteins. Recent research has identified some of the specific effects that phosphorylation (or dephosphorylation) at these sites can produce. Additionally, palmitoylation of SNAP-25, regulates the localization, and hence activity of this key SNARE protein. This review focuses on the location and effects of phosphorylation on SNARE regulation.

Download full-text PDF

Source
http://dx.doi.org/10.1385/CBB:45:1:111DOI Listing

Publication Analysis

Top Keywords

snare complex
12
calcium influx
8
proteins interact
8
interact snare
8
snare proteins
8
effects phosphorylation
8
snare
7
proteins
7
release
5
complex regulation
4

Similar Publications

Background: Radix Bupleuri (RB) and acetaminophen (APAP) are two popular medications having potential hepatotoxicity and substantial risks of irrational co-administration and excessive use, posing an overlooked danger of drug-induced liver injury (DILI). Autophagy is a protective mechanism against APAP-induced DILI, yet, saikosaponin d (SSd) in RB has been characterized to regulate autophagy, although the current findings are controversial.

Purpose: We aim to elucidate whether SSd promoted APAP-induced liver injury by regulating autophagy.

View Article and Find Full Text PDF

How SNARE proteins generate force to fuse membranes.

Biophys J

January 2025

Department of Chemical Engineering, Columbia University, New York, NY 10027. Electronic address:

Membrane fusion is central to fundamental cellular processes such as exocytosis, when an intracellular machinery fuses membrane-enclosed vesicles to the plasma membrane for contents release. The core machinery components are the SNARE proteins. SNARE complexation pulls the membranes together, but the fusion mechanism remains unclear.

View Article and Find Full Text PDF

Background: During mammalian spermatogenesis, the cytoskeleton system plays a significant role in morphological changes. Male infertility such as non-obstructive azoospermia (NOA) might be explained by studies of the cytoskeletal system during spermatogenesis.

Methods: The cytoskeleton, scaffold, and actin-binding genes were analyzed by microarray and bioinformatics (771 spermatogenic cellsgenes and 774 Sertoli cell genes).

View Article and Find Full Text PDF

Botulinum toxin (BoNT), the most potent substance known to humans, likely evolved not to kill but to serve other biological purposes. While its use in cosmetic applications is well known, its medical utility has become increasingly significant due to the intricacies of its structure and function. The toxin's structural complexity enables it to target specific cellular processes with remarkable precision, making it an invaluable tool in both basic and applied biomedical research.

View Article and Find Full Text PDF

Introduction: A leadless pacemaker (LLPM) was recommended for a patient with intermittent complete heart block and near-syncope.

Methods And Results: Delivery of LLPM is through a large sheath that has limited deflection and steerability. This report describes the successful deployment of a ventricular LLPM in a patient with prior surgical correction of AV septal defect with subsequent significant right atrial enlargement.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!