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Synergies in exosomes and autophagy pathways for cellular homeostasis and metastasis of tumor cells

机译:对外泌体和自噬途径的协同作用,用于细胞稳态和肿瘤细胞转移

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摘要

Eukaryotic cells demonstrate two tightly linked vesicular transport systems, comprising intracellular vesicle transport and extracellular vesicle transport system. Intracellular transport vesicles can translocate biomolecules between compartments inside the cell, for example, proteins from the rough endoplasmic reticulum to the Golgi apparatus. Whereas, the secreted vesicles so-called extracellular vesicles facilitate the transport of biomolecules, for example, nucleic acids, proteins and lipids between cells. Vesicles can be formed during the process of endocytosis or/and autophagy and not only act as mediators of intra- and inter-cellular communication but also represent pathological conditions of cells or tissues. In this review, we searched articles in PubMed, published between 2000 and 2020, with following terms: autophagy, autophagocytosis, transport vesicles, lysosomes, endosomes, exocytosis, exosomes, alone or in different combinations. The biological functions that were selected based on relevancy to our topic include cellular homeostasis and tumorigenesis. The searched literature shows that there is a high degree of synergies between exosome biogenesis and autophagy, which encompass endocytosis and endosomes, lysosomes, exocytosis and exosomes, autophagocytosis, autophagosomes and amphisomes. These transport systems not only maintain cellular homeostasis but also operate synergically against fluctuations in the external and internal environment such as during tumorigenesis and metastasis. Additionally, exosomal and autophagic proteins may serve as cancer diagnosis approaches. Exosomal and autophagy pathways play pivotal roles in homeostasis and metastasis of tumor cells. Understanding the crosstalk between endomembrane organelles and vesicular trafficking may expand our insight into cooperative functions of exosomal and autophagy pathways during disease progression and may help to develop effective therapies against lysosomal diseases including cancers and beyond.
机译:真核细胞显示出两个紧密连接的囊泡传输系统,包括细胞内囊泡输送和细胞外囊泡输送系统。细胞内输送囊泡可以在细胞内的隔室之间兼容生物分子,例如,来自粗糙的内质网的蛋白质到GOLGI装置。然而,所谓的细胞外囊囊泡的分泌囊泡促进生物分子的运输,例如核酸,蛋白质和细胞之间的脂质。囊泡可以在内吞作用或/和自噬过程中形成,并且不仅作为卵细胞间通信的介质,而且代表细胞或组织的病理条件。在本次审查中,我们在2000年至2020年间发布的PubMed文章中搜索了文章,以下术语:自噬,自噬咽部,运输囊泡,溶酶体,内体,外毒性,外泌体,单独或不同组合。基于与我们的主题相关性选择的生物学功能包括细胞宿舍和肿瘤率。搜索文献表明,外部生物发生和自噬之间存在高度的协同作用,其包括内吞作用和内体,溶酶体,外尿胞和外泌体,自噬吞吐作用,自噬体和含量。这些运输系统不仅维持细胞稳态,而且还可以协同抵抗外部和内部环境中的波动,例如在肿瘤发生和转移期间。另外,外泌体和自噬蛋白可以作为癌症诊断方法。外泌体和自噬途径在稳态和肿瘤细胞转移中起着枢转作用。了解Endomembrane细胞器和浆果贩运之间的串扰可能会扩大疾病进展过程中外泌体和自噬途径的合作功能的洞察力,并且有助于为溶酶体疾病制定有效的疗法,包括癌症和其他疾病。

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