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盘基网柄菌中蛇形受体对基因调控的功能混杂性

Functional promiscuity of gene regulation by serpentine receptors in Dictyostelium discoideum.

作者信息

Verkerke-Van Wijk I, Kim J Y, Brandt R, Devreotes P N, Schaap P

机构信息

Cell Biology Section, Institute for Molecular Plant Sciences, University of Leiden, 2333 AL Leiden, The Netherlands.

出版信息

Mol Cell Biol. 1998 Oct;18(10):5744-9. doi: 10.1128/MCB.18.10.5744.

Abstract

Serpentine receptors such as smoothened and frizzled play important roles in cell fate determination during animal development. In Dictyostelium discoideum, four serpentine cyclic AMP (cAMP) receptors (cARs) regulate expression of multiple classes of developmental genes. To understand their function, it is essential to know whether each cAR is coupled to a specific gene regulatory pathway or whether specificity results from the different developmental regulation of individual cARs. To distinguish between these possibilities, we measured gene induction in car1 car3 double mutant cell lines that express equal levels of either cAR1, cAR2, or cAR3 under a constitutive promoter. We found that all cARs efficiently mediate both aggregative gene induction by cAMP pulses and induction of postaggregative and prespore genes by persistent cAMP stimulation. Two exceptions to this functional promiscuity were observed. (i) Only cAR1 can mediate adenosine inhibition of cAMP-induced prespore gene expression, a phenomenon that was found earlier in wild-type cells. cAR1's mediation of adenosine inhibition suggests that cAR1 normally mediates prespore gene induction. (ii) Only cAR2 allows entry into the prestalk pathway. Prestalk gene expression is induced by differentiation-inducing factor (DIF) but only after cells have been prestimulated with cAMP. We found that DIF-induced prestalk gene expression is 10 times higher in constitutive cAR2 expressors than in constitutive cAR1 or cAR3 expressors (which still have endogenous cAR2), suggesting that cAR2 mediates induction of DIF competence. Since in wild-type slugs cAR2 is expressed only in anterior cells, this could explain the so far puzzling observations that prestalk cells differentiate at the anterior region but that DIF levels are actually higher at the posterior region. After the initial induction of DIF competence, cAMP becomes a repressor of prestalk gene expression. This function can again be mediated by cAR1, cAR2, and cAR3.

摘要

蛇形受体,如平滑受体和卷曲受体,在动物发育过程中的细胞命运决定中发挥着重要作用。在盘基网柄菌中,四种蛇形环磷酸腺苷(cAMP)受体(cARs)调节多类发育基因的表达。为了解它们的功能,关键在于确定每个cAR是否与特定的基因调控途径偶联,或者特异性是否源于各个cAR不同的发育调控。为区分这些可能性,我们在组成型启动子控制下,测量了表达等量cAR1、cAR2或cAR3的car1 car3双突变细胞系中的基因诱导情况。我们发现,所有cARs都能有效地介导cAMP脉冲诱导的聚集性基因表达,以及持续cAMP刺激诱导的聚集后和前孢子基因表达。不过观察到两个功能混杂的例外情况。(i)只有cAR1能介导腺苷对cAMP诱导的前孢子基因表达的抑制作用,这一现象先前在野生型细胞中已被发现。cAR1介导腺苷抑制作用表明cAR1通常介导前孢子基因的诱导。(ii)只有cAR2能使细胞进入柄细胞前体途径。柄细胞前体基因的表达由分化诱导因子(DIF)诱导,但前提是细胞已先用cAMP进行了预刺激。我们发现,在组成型表达cAR2的细胞中,DIF诱导的柄细胞前体基因表达比组成型表达cAR1或cAR3的细胞(它们仍有内源性cAR2)高10倍,这表明cAR2介导DIF感受态的诱导。由于在野生型蛞蝓中,cAR

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