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双小核草履虫的表面抗原。膜结合形式和可溶性形式。

Surface antigens of Paramecium primaurelia. Membrane-bound and soluble forms.

作者信息

Capdeville Y, Deregnaucourt C, Keller A M

出版信息

Exp Cell Res. 1985 Dec;161(2):495-508. doi: 10.1016/0014-4827(85)90104-1.

DOI:10.1016/0014-4827(85)90104-1
PMID:2415375
Abstract

The surface antigens of Paramecium constitute a family of high molecular weight (ca 300 kD) iso-proteins whose alternative expression, adjusted to environmental conditions, involves both intergenic and interallelic exclusion. Since the surface antigen molecules had previously been shown to play a key role in the control of their own expression, it seemed important to compare the structural particularities of different surface antigens: the G and D antigens of P. primaurelia expressed at different temperatures, and which are coded by two unlinked loci. Here we demonstrate that in all cases a given surface antigen presents two biochemically distinct basic forms: a soluble form recovered from ethanolic extraction of whole cells, and a membrane-bound form recovered from ciliary membranes solubilized by detergent. The membrane-bound form differs from the soluble one by its mobility on SDS gels and by an electrophoretic mobility shift in the presence of anionic or cationic detergents. Furthermore, two 40-45 kD polypeptides sharing common determinants with soluble antigens were found exclusively in ethanolic extracts but not in ciliary membranes: the cross-reactivity of these light polypeptides with ethanol-extracted antigens could be demonstrated only after beta-mercaptoethanol treatment. Immunological comparisons between allelic and non-allelic soluble antigens demonstrate that allelic antigens share a great number of surface epitopes, most of which are not accessible in vivo, while non-allelic antigens appear to share essentially sequence-antigenic determinants. The significance of these results is discussed in relation to the mechanism of antigenic variation.

摘要

草履虫的表面抗原构成了一个高分子量(约300 kD)同工蛋白家族,其交替表达受环境条件调节,涉及基因间和等位基因间的排斥。由于此前已表明表面抗原分子在其自身表达的控制中起关键作用,比较不同表面抗原的结构特性似乎很重要:在不同温度下表达的双小核草履虫的G和D抗原,它们由两个不连锁的基因座编码。在这里,我们证明在所有情况下,给定的表面抗原呈现出两种生化上不同的基本形式:从全细胞乙醇提取物中回收的可溶性形式,以及从用去污剂溶解的纤毛膜中回收的膜结合形式。膜结合形式与可溶性形式的区别在于其在SDS凝胶上的迁移率以及在阴离子或阳离子去污剂存在下的电泳迁移率变化。此外,在乙醇提取物中而非纤毛膜中仅发现了两种与可溶性抗原具有共同决定簇的40 - 45 kD多肽:这些轻多肽与乙醇提取抗原的交叉反应性仅在β-巯基乙醇处理后才能显示出来。等位基因和非等位基因可溶性抗原之间的免疫学比较表明,等位基因抗原共享大量表面表位,其中大多数在体内无法接近,而非等位基因抗原似乎主要共享序列抗原决定簇。本文结合抗原变异机制对这些结果的意义进行了讨论。

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Surface antigens of Paramecium primaurelia. Membrane-bound and soluble forms.双小核草履虫的表面抗原。膜结合形式和可溶性形式。
Exp Cell Res. 1985 Dec;161(2):495-508. doi: 10.1016/0014-4827(85)90104-1.
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The membrane-anchor of Paramecium temperature-specific surface antigens is a glycosylinositol phospholipid.草履虫温度特异性表面抗原的膜锚定物是一种糖基肌醇磷脂。
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Posttranscriptional control is a strong factor enabling exclusive expression of surface antigens in Paramecium tetraurelia.转录后调控是使四膜虫表面抗原得以特异性表达的一个重要因素。
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A new class of Paramecium surface proteins anchored in the plasma membrane by a glycosylinositol phospholipid. Membrane anchor of Paramecium cross-reacting glycoproteins.
一类新的草履虫表面蛋白,通过糖基肌醇磷脂锚定在质膜上。草履虫交叉反应糖蛋白的膜锚定。
Biochem J. 1988 Jul 15;253(2):395-400. doi: 10.1042/bj2530395.