pH对盘状盘基钢柄和孢子抗原单层培养物表达的调控。

J A Dominov, C D Town
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引用次数: 0

摘要

环状腺苷酸单分子膜对盘状盘状体细胞的终末分化有显著的影响。高pH和弱碱的加入有利于孢子的分化,而低pH和弱酸有利于茎细胞的形成。为了分析这种调控的时间和性质,我们提出了一种抗茎血清,并对其进行了表征,我们将其与抗孢子血清一起用于监测单层系统的发育进程,并检测pH在发育早期阶段的表型效应。茎血清可以检测正常发育末期表达的多糖和蛋白抗原。在单层培养中,茎特异性蛋白抗原出现的时间较早,而孢子前液泡出现的时间不受影响。在单层培养中,秸秆多糖抗原的表达早在12小时就发生了,并且定位于形成的小细胞团块内的单个细胞亚群或细胞外空间区域。pH值(和酸/碱)对这些表型特异性抗原的影响可以在它们首次出现后不久的发育早期检测到。在野生型V12 M2细胞的单层中,低pH环境似乎更多地抑制孢子而不是增强柄通路,而高pH环境既抑制柄又增强孢子抗原表达。在产孢突变体HM29的单层中,低pH环境既增强了柄抗原,又抑制了孢子抗原的表达。这些结果表明,在分化过程的很大一部分中,细胞外pH调节表型表达,而不仅仅局限于细胞终末分化。
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Regulation of stalk and spore antigen expression in monolayer cultures of Dictyostelium discoideum by pH.

The terminal differentiation of Dictyostelium discoideum cells plated as monolayers with cyclic AMP is dramatically affected by developmental buffer conditions. High pH and addition of weak bases induces spore differentiation while low pH and weak acids favour stalk cell formation. In order to analyse the timing and nature of this regulation we have raised and characterized an anti-stalk serum which we have used together with an anti-spore serum to monitor developmental progression in the monolayer system and to detect the phenotypic effects of pH at earlier stages of development. The stalk serum detects both polysaccharide and protein antigens expressed during the terminal stages of normal development. In monolayer culture, the stalk-specific protein antigen appears precociously, while the timing of prespore vacuole appearance is unaffected. Expression of stalk polysaccharide antigens in monolayer cultures occurs as early as 12 h and is localized in a single subset of cells or region of extracellular space within the small cell clumps that form. The effects of pH (and acid/base) on these phenotype-specific antigens can be detected early in development, shortly after their first appearance. In monolayers of wild-type V12 M2 cells, the low pH regimes appear to act more by suppressing the spore than enhancing the stalk pathway, while the high pH regimes both suppress stalk and enhance spore antigen expression. In monolayers of the sporogenous mutant HM29, low pH regimes both enhance stalk antigen and suppress spore antigen expression. These results show that extracellular pH regulates phenotypic expression during a large part of the differentiation process and is not simply restricted to terminal cytodifferentiation.

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