| Literature DB >> 30301778 |
Ana Romarowski1, Ángel G Velasco Félix2, Paulina Torres Rodríguez3, María G Gervasi4, Xinran Xu5, Guillermina M Luque1, Gastón Contreras-Jiménez3, Claudia Sánchez-Cárdenas3, Héctor V Ramírez-Gómez3, Diego Krapf5, Pablo E Visconti4, Dario Krapf6, Adán Guerrero2, Alberto Darszon3, Mariano G Buffone7.
Abstract
Filamentous actin (F-actin) is a key factor in exocytosis in many cell types. In mammalian sperm, acrosomal exocytosis (denoted the acrosome reaction or AR), a special type of controlled secretion, is regulated by multiple signaling pathways and the actin cytoskeleton. However, the dynamic changes of the actin cytoskeleton in live sperm are largely not understood. Here, we used the powerful properties of SiR-actin to examine actin dynamics in live mouse sperm at the onset of the AR. By using a combination of super-resolution microscopy techniques to image sperm loaded with SiR-actin or sperm from transgenic mice containing Lifeact-EGFP, six regions containing F-actin within the sperm head were revealed. The proportion of sperm possessing these structures changed upon capacitation. By performing live-cell imaging experiments, we report that dynamic changes of F-actin during the AR occur in specific regions of the sperm head. While certain F-actin regions undergo depolymerization prior to the initiation of the AR, others remain unaltered or are lost after exocytosis occurs. Our work emphasizes the utility of live-cell nanoscopy, which will undoubtedly impact the search for mechanisms that underlie basic sperm functions.This article has an associated First Person interview with the first author of the paper.Entities:
Keywords: Acrosomal exocytosis; Actin; Sperm
Mesh:
Year: 2018 PMID: 30301778 PMCID: PMC6240301 DOI: 10.1242/jcs.218958
Source DB: PubMed Journal: J Cell Sci ISSN: 0021-9533 Impact factor: 5.285