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Alternative Splicing of SNAP-25 Regulates Secretion through Nonconservative Substitutions in the SNARE Domain

机译:SNAP-25的选择性剪接通过SNARE域中的非保守取代调节分泌。

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The essential membrane fusion apparatus in mammalian cells, the soluble N -ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complex, consists of four α-helices formed by three proteins: SNAP-25, syntaxin 1, and synaptobrevin 2. SNAP-25 contributes two helices to the complex and is targeted to the plasma membrane by palmitoylation of four cysteines in the linker region. It is alternatively spliced into two forms, SNAP-25a and SNAP-25b, differing by nine amino acids substitutions. When expressed in chromaffin cells from SNAP-25 null mice, the isoforms support different levels of secretion. Here, we investigated the basis of that different secretory phenotype. We found that two nonconservative substitutions in the N-terminal SNARE domain and not the different localization of one palmitoylated cysteine cause the functional difference between the isoforms. Biochemical and molecular dynamic simulation experiments revealed that the two substitutions do not regulate secretion by affecting the property of SNARE complex itself, but rather make the SNAP-25b-containing SNARE complex more available for the interaction with accessory factor(s).
机译:哺乳动物细胞中必不可少的膜融合设备,可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体(SNARE)复合物,由四个蛋白质组成的四个α螺旋:SNAP-25,syntaxin 1和synaptobrevin2。SNAP-25有助于复合物的两个螺旋,并通过在连接区中的四个半胱氨酸的棕榈酰化作用靶向质膜。或者,将其剪接为两种形式,即SNAP-25a和SNAP-25b,相差9个氨基酸。当在来自SNAP-25 null小鼠的嗜铬细胞中表达时,同工型支持不同水平的分泌。在这里,我们调查了不同的分泌表型的基础。我们发现N末端SNARE域中的两个非保守取代,而不是一个棕榈酰化的半胱氨酸的不同定位会导致同工型之间的功能差异。生化和分子动力学模拟实验表明,这两个取代并不通过影响​​SNARE复合物本身的性质来调节分泌,而是使含SNAP-25b的SNARE复合物更易于与辅助因子相互作用。

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