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Aquaporin-4 Dynamics in Orthogonal Arrays in Live Cells Visualized by Quantum Dot Single Particle Tracking

机译:量子点单粒子跟踪可视化活细胞正交阵列中的水通道蛋白4动力学。

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Freeze-fracture electron microscopy (FFEM) indicates that aquaporin-4 (AQP4) water channels can assemble in cell plasma membranes in orthogonal arrays of particles (OAPs). We investigated the determinants and dynamics of AQP4 assembly in OAPs by tracking single AQP4 molecules labeled with quantum dots at an engineered external epitope. In several transfected cell types, including primary astrocyte cultures, the long N-terminal “M1” form of AQP4 diffused freely, with diffusion coefficient ~5 × 10?10 cm2/s, covering ~5 μm in 5 min. The short N-terminal “M23” form of AQP4, which by FFEM was found to form OAPs, was relatively immobile, moving only ~0.4 μm in 5 min. Actin modulation by latrunculin or jasplakinolide did not affect AQP4-M23 diffusion, but deletion of its C-terminal postsynaptic density 95/disc-large/zona occludens (PDZ) binding domain increased its range by approximately twofold over minutes. Biophysical analysis of short-range AQP4-M23 diffusion within OAPs indicated a spring-like potential, with a restoring force of ~6.5 pN/μm. These and additional experiments indicated that 1) AQP4-M1 and AQP4-M23 isoforms do not coassociate in OAPs; 2) OAPs can be imaged directly by total internal reflection fluorescence microscopy; and 3) OAPs are relatively fixed, noninterconvertible assemblies that do not require cytoskeletal or PDZ-mediated interactions for formation. Our measurements are the first to visualize OAPs in live cells.
机译:冷冻断裂电子显微镜(FFEM)表明,aquaporin-4(AQP4)水通道可在细胞质膜中以正交颗粒阵列(OAPs)组装。我们通过跟踪在工程外部表位上标记有量子点的单个AQP4分子,研究了OAP中AQP4装配的决定因素和动力学。在包括原代星形胶质细胞培养在内的几种转染细胞类型中,AQP4的长N端“ M1”形式自由扩散,扩散系数〜5×10 ?10 cm 2 / s,在5分钟内覆盖〜5μm。 FFEM发现可形成OAP的AQP4的短N端“ M23”形式相对固定,在5分钟内仅移动约0.4μm。 latrunculin或jasplakinolide对肌动蛋白的调节作用不会影响AQP4-M23扩散,但其C末端突触后密度95 / disc-large / zona咬合蛋白(PDZ)结合域的缺失在几分钟内将其作用范围增加了两倍。对OAP内部短程AQP4-M23扩散的生物物理分析表明,它具有类似于弹簧的潜力,恢复力约为6.5 pN /μm。这些和其他实验表明:1)AQP4-M1和AQP4-M23同工型在OAP中不共缔合; 2)OAP可以通过全内反射荧光显微镜直接成像; (3)OAP是相对固定的,不可互换的组件,不需要细胞骨架或PDZ介导的相互作用即可形成。我们的测量是第一个可视化活细胞中OAP的测量。

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