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首页> 外文期刊>Annals of the New York Academy of Sciences >Fluorescent Cargo Proteins in Peptidergic Endocrine Cells: Cell Type Determines Secretion Kinetics at Exocytosis
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Fluorescent Cargo Proteins in Peptidergic Endocrine Cells: Cell Type Determines Secretion Kinetics at Exocytosis

机译:肽能内分泌细胞中的荧光货物蛋白:细胞类型决定胞吐作用的分泌动力学

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摘要

Fluorescent fusion proteins are an important tool for the study of vesicle trafficking and exocytosis, especially when combined with newer types of microscopy. We previously reported that the design of a vesicle-targeted fluorescent fusion construct strongly influences the kinetics of fluorescence change at exocytosis. In the present study we demonstrate that the cell in which a construct is expressed also affects the kinetics of fluorescence change at exocytosis. We fused enhanced green fluorescent protein to the carboxy terminus of the vesicular cargo protein rodent islet amyloid polypeptide. The two proteins were separated by a "linker" sequence of 18 amino acids. We then compared kinetics of fluorescence change at exocytosis for this fluorescent cargo protein expressed in three different types of peptidergic endocrine cell: pancreatic alpha cell, pancreatic beta cell, and adrenal chromaf fin cell. In resting cells of all three types, fluorescent spots of similar size and membrane-proximal density appeared near the plasma membrane as expected if the probe is stored in large dense-core secretory vesicles. Upon stimulation, the fluorescent spots displayed sudden changes in fluorescence intensity that were consistent with exocytosis. In beta and alpha cells the fluorescent spots consistently brightened and persisted, whereas in chromaffin cells the fluorescent spots always dispersed rapidly. Thus, for fluorescent cargo proteins in peptidergic endocrine cells, cell type influences the kinetics of fluorescence change at exocytosis. Together with our previous findings, this observation strongly highlights the fact that the behavior of vesicle-targeted fluorescent cargo may be unrelated to that of native cargo, and it emphasizes the need for caution in interpreting fluorescence kinetics in terms of an exocytosis mechanism.
机译:荧光融合蛋白是研究囊泡运输和胞吐作用的重要工具,特别是与新型显微镜结合使用时。我们以前报道过,以囊泡为靶标的荧光融合构建体的设计强烈影响胞吐作用时荧光变化的动力学。在本研究中,我们证明了其中表达构建体的细胞还影响胞吐作用时荧光变化的动力学。我们将增强的绿色荧光蛋白融合到水泡货物蛋白啮齿动物胰岛淀粉样蛋白多肽的羧基末端。两种蛋白质由18个氨基酸的“接头”序列隔开。然后,我们比较了在三种不同类型的肽能性内分泌细胞(胰腺α细胞,胰腺β细胞和肾上腺色鳍鳍细胞)中表达的这种荧光货物蛋白在胞吐作用时荧光变化的动力学。在所有三种类型的静止细胞中,如果将探针储存在大的密芯分泌小泡中,则预期在质膜附近出现大小和膜近端密度相似的荧光斑点。刺激后,荧光斑点显示出与胞吐作用一致的荧光强度突然变化。在β和α细胞中,荧光斑点始终变亮并持续存在,而在嗜铬细胞中,荧光斑点总是迅速分散。因此,对于肽能性内分泌细胞中的荧光货物蛋白,细胞类型会影响胞吐作用时荧光变化的动力学。与我们以前的发现一起,该观察结果强烈地强调了以囊泡为靶标的荧光货物的行为可能与天然货物的行为无关的事实,并强调在根据胞吐机制解释荧光动力学时需要谨慎。

著录项

  • 来源
    《Annals of the New York Academy of Sciences》 |2008年第2008期|7-17|共11页
  • 作者单位

    Department of Physiology and Biophysics, Keck School of Medicine, Zilkha Neurogenetic Institute, University of Southern California, Los Angeles, California, USA;

    Department of Physiology and Biophysics, Keck School of Medicine, Zilkha Neurogenetic Institute, University of Southern California, Los Angeles, California, USA Department of Physiology, Mahidol University, Bangkok, Thailand;

    Department of Physiology and Biophysics, Keck School of Medicine, Zilkha Neurogenetic Institute, University of Southern California, Los Angeles, California, USA;

    Department of Physiology and Biophysics, Keck School of Medicine, Zilkha Neurogenetic Institute, University of Southern California, Los Angeles, California, USA;

    Department of Physiology and Biophysics, Keck School of Medicine, Zilkha Neurogenetic Institute, University of Southern California, Los Angeles, California, USA 1501 San Pablo St., ZNI325, Los Angeles, CA 90033;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    peptide hormones; islets of langerhans; insulin; insulin-secreting cells; glucagon-secreting cells; green fluorescent proteins; chromaffin granules; secretory vesicles; membrane fusion;

    机译:肽激素朗格汉斯岛胰岛素;胰岛素分泌细胞;胰高血糖素分泌细胞;绿色荧光蛋白;嗜铬粒蛋白颗粒;分泌小泡;膜融合;

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