Palmitoylation of A-kinase anchoring protein 79/150 modulates its nanoscale organization, trafficking, and mobility in postsynaptic spines.

IF 2.8 4区 医学 Q2 NEUROSCIENCES Frontiers in Synaptic Neuroscience Pub Date : 2022-09-15 eCollection Date: 2022-01-01 DOI:10.3389/fnsyn.2022.1004154
Xiaobing Chen, Kevin C Crosby, Austin Feng, Alicia M Purkey, Maria A Aronova, Christine A Winters, Virginia T Crocker, Richard D Leapman, Thomas S Reese, Mark L Dell'Acqua
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引用次数: 3

Abstract

A-kinase anchoring protein 79-human/150-rodent (AKAP79/150) organizes signaling proteins to control synaptic plasticity. AKAP79/150 associates with the plasma membrane and endosomes through its N-terminal domain that contains three polybasic regions and two Cys residues that are reversibly palmitoylated. Mutations abolishing palmitoylation (AKAP79/150 CS) reduce its endosomal localization and association with the postsynaptic density (PSD). Here we combined advanced light and electron microscopy (EM) to characterize the effects of AKAP79/150 palmitoylation on its postsynaptic nanoscale organization, trafficking, and mobility in hippocampal neurons. Immunogold EM revealed prominent extrasynaptic membrane AKAP150 labeling with less labeling at the PSD. The label was at greater distances from the spine membrane for AKAP150 CS than WT in the PSD but not in extra-synaptic locations. Immunogold EM of GFP-tagged AKAP79 WT showed that AKAP79 adopts a vertical, extended conformation at the PSD with its N-terminus at the membrane, in contrast to extrasynaptic locations where it adopts a compact or open configurations of its N- and C-termini with parallel orientation to the membrane. In contrast, GFP-tagged AKAP79 CS was displaced from the PSD coincident with disruption of its vertical orientation, while proximity and orientation with respect to the extra-synaptic membrane was less impacted. Single-molecule localization microscopy (SMLM) revealed a heterogeneous distribution of AKAP150 with distinct high-density, nano-scale regions (HDRs) overlapping the PSD but more prominently located in the extrasynaptic membrane for WT and the CS mutant. Thick section scanning transmission electron microscopy (STEM) tomography revealed AKAP150 immunogold clusters similar in size to HDRs seen by SMLM and more AKAP150 labeled endosomes in spines for WT than for CS, consistent with the requirement for AKAP palmitoylation in endosomal trafficking. Hidden Markov modeling of single molecule tracking data revealed a bound/immobile fraction and two mobile fractions for AKAP79 in spines, with the CS mutant having shorter dwell times and faster transition rates between states than WT, suggesting that palmitoylation stabilizes individual AKAP molecules in various spine subpopulations. These data demonstrate that palmitoylation fine tunes the nanoscale localization, mobility, and trafficking of AKAP79/150 in dendritic spines, which might have profound effects on its regulation of synaptic plasticity.

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a激酶锚定蛋白79/150的棕榈酰化调节其在突触后棘中的纳米级组织、运输和迁移。
a激酶锚定蛋白79-人/150-啮齿动物(AKAP79/150)组织信号蛋白控制突触可塑性。AKAP79/150通过其n端结构域与质膜和核内体结合,该结构域包含三个多碱基区域和两个可逆棕榈酰化的Cys残基。突变消除棕榈酰化(AKAP79/150 CS)降低其内体定位和与突触后密度(PSD)的关联。在这里,我们结合先进的光学和电子显微镜(EM)来表征AKAP79/150棕榈酰化对海马神经元突触后纳米级组织、运输和移动的影响。免疫金电镜显示突触外膜AKAP150标记明显,PSD标记较少。在PSD中,AKAP150 CS的标记距离脊柱膜的距离比WT大,但在突触外位置没有。gfp标记的AKAP79 WT免疫金电镜显示,AKAP79在PSD处呈垂直延伸构象,其N端位于膜上,而在突触外位置,其N端和c端呈紧凑或开放的构型,与膜平行。相比之下,gfp标记的AKAP79 CS从PSD移位,同时其垂直方向被破坏,而相对于突触外膜的接近性和方向受到的影响较小。单分子定位显微镜(SMLM)显示了AKAP150的异质性分布,其高密度纳米级区域(hdr)与PSD重叠,但在WT和CS突变体中更明显地位于突触外膜。厚切片扫描透射电子显微镜(STEM)断层扫描显示,AKAP150免疫金团簇的大小与SMLM所见的hdr相似,WT的棘内体中AKAP150标记的内体比CS多,这与内体运输中AKAP棕榈酰化的要求一致。单分子跟踪数据的隐马尔可夫模型揭示了AKAP79在脊柱中的结合/固定部分和两个移动部分,与WT相比,CS突变体具有更短的停留时间和更快的状态转换速率,这表明棕榈酰化稳定了不同脊柱亚群中的单个AKAP分子。这些数据表明,棕榈酰化精细调节AKAP79/150在树突棘中的纳米级定位、迁移和运输,这可能对其调节突触可塑性产生深远影响。
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来源期刊
CiteScore
7.10
自引率
2.70%
发文量
74
审稿时长
14 weeks
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