The Hsc70 system maintains the synaptic SNARE protein SNAP-25 in an assembly-competent state and delays its aggregation.

IF 4 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Biological Chemistry Pub Date : 2024-11-15 DOI:10.1016/j.jbc.2024.108001
Karishma Bhasne, Antonia Bogoian-Mullen, Eugenia M Clerico, Lila M Gierasch
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Abstract

The complex mechanism of synaptic vesicle fusion with the plasma membrane for neurotransmitter release is initiated by the formation of the SNARE complex at the presynaptic terminal of the neuron. The SNARE complex is composed of four helices contributed by three proteins: one from syntaxin (localized at the plasma membrane), one from synaptobrevin (localized at the synaptic vesicle), and two from the intrinsically disordered and aggregation-prone SNAP-25, which is localized to the plasma membrane by virtue of palmitoylation of cysteine residues. The fusion process is tightly regulated and requires the constitutively expressed Hsp70 chaperone (Hsc70) and its J-protein co-chaperone CSPα. We hypothesize that Hsc70 and CSPα cooperate to chaperone SNAP-25, disfavoring its aggregation and keeping it in a folding state competent for SNARE complex formation. To test this hypothesis, we employed a bottom-up approach and studied the interaction between Hsc70 and CSPα with SNAP-25 in vitro. We showed that the aggregation of SNAP-25 is delayed in the presence of Hsc70 and CSPα. Using a peptide array that spans the sequence of SNAP-25, we identified three potential Hsc70-interacting sequences and designed peptides containing these sequences to test binding in solution. We characterized the interaction of SNAP-25-derived peptides with Hsc70 and CSPα using a combination of biochemical and biophysical techniques, including native-PAGE, binding affinity by fluorescence anisotropy, ATPase-activity of Hsc70, and NMR. We have identified an Hsc70 binding site within SNAP-25 that is likely to represent the site used in the cell to facilitate SNARE complex formation.

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Hsc70 系统能将突触 SNARE 蛋白 SNAP-25 保持在适合组装的状态,并延缓其聚集。
神经元突触前末端 SNARE 复合物的形成启动了突触小泡与质膜融合以释放神经递质的复杂机制。SNARE 复合物由三个蛋白质贡献的四个螺旋组成:一个来自 syntaxin(定位于质膜),一个来自 synaptobrevin(定位于突触囊泡),还有两个来自本质上无序且易聚集的 SNAP-25,后者通过半胱氨酸残基的棕榈酰化定位于质膜。融合过程受到严格调控,需要组成型表达的 Hsp70 合子(Hsc70)及其 J 蛋白辅助合子 CSPα。我们推测,Hsc70 和 CSPα 相互合作,对 SNAP-25 进行合体,不利于其聚集,并使其保持折叠状态,以利于 SNARE 复合物的形成。为了验证这一假设,我们采用了一种自下而上的方法,在体外研究了 Hsc70 和 CSPα 与 SNAP-25 之间的相互作用。我们发现,在 Hsc70 和 CSPα 的存在下,SNAP-25 的聚集会延迟。利用横跨 SNAP-25 序列的肽阵列,我们确定了三个潜在的 Hsc70 相互作用序列,并设计了含有这些序列的肽来测试溶液中的结合情况。我们结合使用了多种生化和生物物理技术,包括原生聚合酶链反应(native-PAGE)、荧光各向异性结合亲和力、Hsc70 的 ATPase 活性和核磁共振,鉴定了 SNAP-25 衍生肽与 Hsc70 和 CSPα 的相互作用。我们在 SNAP-25 中发现了一个 Hsc70 结合位点,该位点很可能代表细胞中用于促进 SNARE 复合物形成的位点。
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来源期刊
Journal of Biological Chemistry
Journal of Biological Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry
自引率
4.20%
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1233
期刊介绍: The Journal of Biological Chemistry welcomes high-quality science that seeks to elucidate the molecular and cellular basis of biological processes. Papers published in JBC can therefore fall under the umbrellas of not only biological chemistry, chemical biology, or biochemistry, but also allied disciplines such as biophysics, systems biology, RNA biology, immunology, microbiology, neurobiology, epigenetics, computational biology, ’omics, and many more. The outcome of our focus on papers that contribute novel and important mechanistic insights, rather than on a particular topic area, is that JBC is truly a melting pot for scientists across disciplines. In addition, JBC welcomes papers that describe methods that will help scientists push their biochemical inquiries forward and resources that will be of use to the research community.
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