Department of Physiology and Biophysics, University of Washington, Seattle, Washington 98195, USA.
J Neurochem. 2010 Nov;115(3):654-66. doi: 10.1111/j.1471-4159.2010.06965.x. Epub 2010 Sep 28.
At chemical synapses, synaptic cleft components interact with elements of the nerve terminal membrane to promote differentiation and regulate function. Laminins containing the β2 subunit are key cleft components, and they act in part by binding the pore-forming subunit of a pre-synaptic voltage-gated calcium channel (Ca(v)α) (Nishimune et al. 2004). In this study, we identify Ca(v)α-associated intracellular proteins that may couple channel-anchoring to assembly or stabilization of neurotransmitter release sites called active zones. Using Ca(v)α-antibodies, we isolated a protein complex from Torpedo electric organ synapses, which resemble neuromuscular junctions but are easier to isolate in bulk. We identified 10 components of the complex: six cytoskeletal proteins (α2/β2 spectrins, plectin 1, AHNAK/desmoyokin, dystrophin, and myosin 1), two active zone components (bassoon and piccolo), synaptic laminin, and a calcium channel β subunit. Immunocytochemistry confirmed these proteins in electric organ synapses, and PCR analysis revealed their expression by developing mammalian motor neurons. Finally, we show that synaptic laminins also interact with pre-synaptic integrins containing the α3 subunit. Together with our previous finding that a distinct synaptic laminin interacts with SV2 on nerve terminals (Son et al. 2000), our results identify three paths by which synaptic cleft laminins can send developmentally important signals to nerve terminals.
在化学突触中,突触间隙成分与神经末梢膜的元素相互作用,促进分化并调节功能。含有β2 亚基的层粘连蛋白是关键的间隙成分,它们的作用部分是通过结合前突触电压门控钙通道(Ca(v)α)的孔形成亚基(Nishimune 等人,2004 年)。在这项研究中,我们确定了 Ca(v)α 相关的细胞内蛋白,这些蛋白可能将通道锚定与神经递质释放位点(称为活性区)的组装或稳定偶联。使用 Ca(v)α 抗体,我们从电鳐电器官突触中分离出一种蛋白复合物,该复合物类似于神经肌肉接头,但更易于大规模分离。我们鉴定了复合物的 10 个成分:6 个细胞骨架蛋白(α2/β2 spectrins、plectin 1、AHNAK/desmoyokin、dystrophin 和肌球蛋白 1)、2 个活性区成分(bassoon 和 piccolo)、突触层粘连蛋白和钙通道β 亚基。免疫细胞化学证实了这些蛋白在电器官突触中的存在,PCR 分析显示它们在发育中的哺乳动物运动神经元中表达。最后,我们表明突触层粘连蛋白还与含有α3 亚基的前突触整合素相互作用。结合我们之前发现的一种独特的突触层粘连蛋白与神经末梢上的 SV2 相互作用(Son 等人,2000 年),我们的结果确定了突触间隙层粘连蛋白可以向神经末梢发送发育重要信号的三种途径。