Song Sang-Ho, Augustine George J
Temasek Life sciences Laboratory, Singapore.
Department of Physiology, National University of Singapore, Singapore.
J Physiol. 2024 Jul 9. doi: 10.1113/JP286177.
Although synapsins have long been proposed to be key regulators of synaptic vesicle (SV) clustering, their mechanism of action has remained mysterious and somewhat controversial. Here, we review synapsins and their associations with each other and with SVs. We highlight the recent hypothesis that synapsin tetramerization is a mechanism for SV clustering. This hypothesis, which aligns with numerous experimental results, suggests that the larger size of synapsin tetramers, in comparison to dimers, allows tetramers to form optimal bridges between SVs that overcome the repulsive force associated with the negatively charged membrane of SVs and allow synapsins to form a reserve pool of SVs within presynaptic terminals.
尽管长期以来人们一直认为突触素是突触小泡(SV)聚集的关键调节因子,但其作用机制一直神秘且存在一定争议。在此,我们综述突触素及其相互之间以及与突触小泡的关联。我们着重介绍了最近的一种假说,即突触素四聚化是突触小泡聚集的一种机制。这一假说与众多实验结果相符,表明与二聚体相比,突触素四聚体尺寸更大,能够在突触小泡之间形成最佳桥梁,克服与带负电荷的突触小泡膜相关的排斥力,并使突触素在突触前终末形成突触小泡储备池。