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βIII Spectrin Regulates the Structural Integrity and the Secretory Protein Transport of the Golgi Complex

机译:βIII血影蛋白调节高尔基体的结构完整性和分泌蛋白转运

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摘要

A spectrin-based cytoskeleton is associated with endomembranes, including the Golgi complex and cytoplasmic vesicles, but its role remains poorly understood. Using new generated antibodies to specific peptide sequences of the human βIII spectrin, we here show its distribution in the Golgi complex, where it is enriched in the trans-Golgi and trans-Golgi network. The use of a drug-inducible enzymatic assay that depletes the Golgi-associated pool of PI4P as well as the expression of PH domains of Golgi proteins that specifically recognize this phosphoinositide both displaced βIII spectrin from the Golgi. However, the interference with actin dynamics using actin toxins did not affect the localization of βIII spectrin to Golgi membranes. Depletion of βIII spectrin using siRNA technology and the microinjection of anti-βIII spectrin antibodies into the cytoplasm lead to the fragmentation of the Golgi. At ultrastructural level, Golgi fragments showed swollen distal Golgi cisternae and vesicular structures. Using a variety of protein transport assays, we show that the endoplasmic reticulum-to-Golgi and post-Golgi protein transports were impaired in βIII spectrin-depleted cells. However, the internalization of the Shiga toxin subunit B to the endoplasmic reticulum was unaffected. We state that βIII spectrin constitutes a major skeletal component of distal Golgi compartments, where it is necessary to maintain its structural integrity and secretory activity, and unlike actin, PI4P appears to be highly relevant for the association of βIII spectrin the Golgi complex.
机译:基于血影蛋白的细胞骨架与包括高尔基复合体和细胞质囊泡在内的子宫内膜有关,但其作用仍知之甚少。使用针对人βIII血影蛋白的特定肽序列的新型抗体,我们在此处显示了其在高尔基复合体中的分布,该复合体在反高尔基体和反高尔基体网络中富集。使用药物诱导的酶分析法可耗尽与高尔基体相关的PI4P池,并特异性识别该磷酸肌醇的高尔基体蛋白的PH结构域表达均从高尔基体中取代了βIII血影蛋白。然而,使用肌动蛋白毒素对肌动蛋白动力学的干扰并不影响βIII血影蛋白在高尔基体膜上的定位。使用siRNA技术耗尽βIII血影蛋白并向细胞质中显微注射抗βIII血影蛋白抗体会导致高尔基体碎裂。在超微结构水平,高尔基体碎片显示远端高尔基体池和水泡结构肿胀。使用多种蛋白质转运测定法,我们显示内质网至高尔基体和高尔基体后的蛋白质转运在βIII血影蛋白缺失的细胞中受损。但是,志贺毒素亚基B内质网的内在化不受影响。我们指出,βIII血影蛋白构成了高尔基体远端隔室的主要骨骼成分,在其中必须保持其结构完整性和分泌活性,并且与肌动蛋白不同,PI4P似乎与βIII血影蛋白与高尔基体的缔合高度相关。

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