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A COMPARATIVE STUDY OF THE CELL SURFACE AND THE MECHANISM OF MACROMOLECULE INTERNALIZATION IN THREE PHYTOFLAGELLATES.

机译:三种小扁豆的细胞表面与大分子内部化机制的比较研究。

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摘要

A cytochemical investigation on the cell surface of three phytoflagellates, one chlorophyte, Dunaliella tertiolecta and two dinoflagellates, Amphidinium carterae and Prorocentrum micans showed that they all possess an anionic and heterogenous oligosaccharide coat on the external side of the plasma membrane. Studies with lectins gave clues to the nature of the sugar residues of their glycoconjugates. In particular, they may contain N-acetylglucosamine and/or sialic acid, N-acetylgalactosamine and D-mannose or glucose. Among other properties, the carbohydrate moieties of the cell surface components were found to play an important role in cell recognition, cell to cell adhesion and in endocytosis.;In Prorocentrum, exogenous macromolecules were internalized via surface pores, while in Amphidinium the ligands were taken in by plasma membrane-derived vesicles with subsequent incorporation into the peripheral cytoplasmic vacuole. In both dinoflagellates, the major site of macromolecule internalization was the flagellar canal-pusule system. Morphological and morphometric studies on Prorocentrum showed pusule size changes in response to different levels of salinity and temperature.;A three-dimensional model of Amphidinium pusule is proposed based on sequential sections. It is suggested that a fibrillar collar system in conjunction with the flagellar-beating plays an important role in regulating the flow of materials in and out of the pusule. It appears that the pusule is a complex structure involved in osmoregulation, cellular uptake and possibly secretion.;All three phytoflagellates were able to internalize macromolecules such as horseradish peroxidase, cationized ferritin, lectins and lectin-colloidal gold conjugates. In Dunaliella pinocytosis was observed for the first time, and was found to occur in the vicinity of the flagella, away from the cup-shaped chloroplast. During fluid-phase and adsorptive endocytosis, macromolecules were trapped within uncoated or coated pits and then delivered, via endosomes, to the lysosomal system. The reverse process of metabolic secretion as part of membrane recycling is also described.
机译:对三种植物鞭毛藻的细胞表面进行的细胞化学研究表明,它们都在质膜的外侧均具有阴离子性和异质性的寡糖涂层,这三种植物鞭毛藻是一种绿藻类,杜氏杜氏藻和两个鞭毛藻,Amphidinium Carterae和Prorocentrum micans。用凝集素的研究为它们的糖缀合物的糖残基的性质提供了线索。特别地,它们可以包含N-乙酰基葡糖胺和/或唾液酸,N-乙酰基半乳糖胺和D-甘露糖或葡萄糖。除其他特性外,还发现细胞表面成分的碳水化合物部分在细胞识别,细胞间粘附和内吞作用中起着重要作用。;在原中心,外源大分子通过表面孔被内化,而在两栖动物中则采用配体通过质膜来源的囊泡进入,随后并入外周细胞质液泡中。在两个鞭毛虫中,大分子内化的主要部位是鞭毛管-脉管系统。对原肠的形态学和形态学研究表明,随着盐度和温度的不同,小肠的大小也会发生变化。提示与鞭毛搏动结合的原纤维颈圈系统在调节物质流入和流出脓液中起着重要作用。脓液似乎是一个复杂的结构,参与渗透压调节,细胞摄取以及可能的分泌。所有三种植物鞭毛虫都能够内化大分子,例如辣根过氧化物酶,阳离子化铁蛋白,凝集素和凝集素-胶体金结合物。在杜氏藻中首次观察到胞饮作用,并发现其发生在鞭毛附近,远离杯状叶绿体。在液相和吸附性内吞过程中,大分子被捕获在未包被或包被的凹坑中,然后通过内体传递到溶酶体系统。还描述了作为膜再循环一部分的代谢分泌的逆过程。

著录项

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Biology.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 1 p.
  • 总页数 1
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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