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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Ferritin is secreted via 2 distinct nonclassical vesicular pathways
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Ferritin is secreted via 2 distinct nonclassical vesicular pathways

机译:铁蛋白通过2个不同的非生物囊泡途径分泌

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Ferritin turnover plays a major role in tissue iron homeostasis, and ferritin malfunction is associated with impaired iron homeostasis and neurodegenerative diseases. In most eukaryotes, ferritin is considered an intracellular protein that stores iron in a nontoxic and bioavailable form. In insects, ferritin is a classically secreted protein and plays a major role in systemic iron distribution. Mammalian ferritin lacks the signal peptide for classical endoplasmic reticulum-Golgi secretion but is found in serum and is secreted via a nonclassical lysosomal secretion pathway. This study applied bioinformatics and biochemical tools, alongside a protein trafficking mouse models, to characterize the mechanisms of ferritin secretion. Ferritin trafficking via the classical secretion pathway was ruled out, and a 2: 1 distribution of intracellular ferritin between membrane-bound compartments and the cytosol was observed, suggesting a role for ferritin in the vesicular compartments of the cell. Focusing on nonclassical secretion, we analyzed mouse models of impaired endolysosomal trafficking and found that ferritin secretion was decreased by a BLOC-1 mutation but increased by BLOC-2, BLOC-3, and Rab27A mutations of the cellular trafficking machinery, suggesting multiple export routes. A 13-amino-acid motif unique to ferritins that lack the secretion signal peptide was identified on the BC-loop of both subunits and plays a role in the regulation of ferritin secretion. Finally, we provide evidence that secretion of iron-rich ferritin was mediated via the multivesicular body-exosome pathway. These results enhance our understanding of the mechanism of ferritin secretion, which is an important piece in the puzzle of tissue iron homeostasis.
机译:铁蛋白营业额在组织铁袜中发挥着重要作用,铁素故障与铁稳态和神经变性疾病有害。在大多数真核节中,铁蛋白被认为是一种储存熨斗的细胞内蛋白,以无毒和生物可利用的形式。在昆虫中,铁蛋白是一种经典的分泌蛋白质,并在全身铁分布中发挥重要作用。哺乳动物铁蛋白缺乏用于经典内质网的信号肽 - GOLGI分泌,但在血清中发现,并通过非生物溶酶体分泌途径分泌。本研究应用生物信息学和生物化学工具,以及蛋白质贩运小鼠模型,以表征铁蛋白分泌机制。通过经典分泌途径排出铁蛋白贩运,并且观察到膜结合隔室和细胞溶胶之间的细胞内铁蛋白的2:1分布,表明铁蛋白在细胞的凹形室中的作用。专注于非化学分泌,我们分析了损伤的内溶解组织贩运的小鼠模型,发现通过Bloc-1突变降低了铁蛋白分泌,但通过细胞贩运机械的Bloc-2,Bloc-3和Rab27a突变增加,提出了多种出口路线。在两个亚基的BC环上鉴定出缺乏分泌信号肽的铁蛋白特异的13-氨基酸基序,并在铁蛋白分泌调节中发挥作用。最后,我们提供了证据,即通过多猪体外途径介导铁富含铁蛋白的分泌。这些结果提高了我们对铁蛋白分泌机制的理解,这是组织铁袜难题的重要作品。

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  • 作者单位

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

    Capital Med Univ Beijing Pediat Res Inst MOE Key Lab Major Dis Children Ctr Med Genet Beijing;

    Capital Med Univ Beijing Pediat Res Inst MOE Key Lab Major Dis Children Ctr Med Genet Beijing;

    Technion Fac Biotechnol &

    Food Engn CryoEM Lab Soft Matter Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn CryoEM Lab Soft Matter Haifa Israel;

    Technion Fac Biotechnol &

    Food Engn CryoEM Lab Soft Matter Haifa Israel;

    Univ Zaragoza Inst Nanociencia Aragon Dept Quim Analit Zaragoza Spain;

    Nanjing Univ Med Sch Nanjing Jiangsu Peoples R China;

    Nanjing Univ Med Sch Nanjing Jiangsu Peoples R China;

    Zhejiang Univ Sch Med Dept Neurobiol Hangzhou Zhejiang Peoples R China;

    Univ Brescia Dept Mol &

    Translat Med Brescia Italy;

    Univ Brescia Dept Mol &

    Translat Med Brescia Italy;

    Technion Lorry I Lokey Interdisciplinary Ctr Life Sci &

    En Haifa Israel;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Mol Med Program NIH Bethesda MD USA;

    Technion Fac Biotechnol &

    Food Engn Lab Mol Nutr IL-32000 Haifa Israel;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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