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生物钟控制基因ccg-1的光诱导在粗糙脉孢菌中并非通过生物钟进行传导。

Light induction of the clock-controlled gene ccg-1 is not transduced through the circadian clock in Neurospora crassa.

作者信息

Arpaia G, Loros J J, Dunlap J C, Morelli G, Macino G

机构信息

Dipartimento di Biopatologia Umana, Policlinico Umberto I, Università di Roma La Sapienza, Italy.

出版信息

Mol Gen Genet. 1995 Apr 20;247(2):157-63. doi: 10.1007/BF00705645.

Abstract

Ambient light and the circadian clock have been shown to be capable of acting either independently or in an interrelated fashion to regulate the expression of conidiation in the ascomycete fungus Neurospora crassa. Recently several molecular correlates of the circadian clock have been identified in the form of the morning-specific clock-controlled genes ccg-1 and ccg-2. In this paper we report studies on the regulation of ccg-1, an abundantly expressed gene displaying complex regulation. Consistent with an emerging consensus for clock-controlled genes and conidiation genes in Neurospora, we report that ccg-1 expression is induced by light, and show that this induction is independent of the direct effects of light on the circadian clock. Although circadian regulation of the gene is lost in strains lacking a functional clock, expression of ccg-1 is still not constitutive, but rather fluctuates in concert with changes in developmental potential seen in such strains. Light induction of ccg-1 requires the products of the Neurospora wc-1 and wc-2 genes, but surprisingly the requirement for wc-2 is suppressed in conditional mutants of cot-1, a gene that encodes, a cAMP-dependent protein kinase. These data provide insight into a complex regulatory web, involving at least circadian clock control, light control, metabolic control, and very probably developmental regulation, that governs the expression of ccg-1.

摘要

环境光和生物钟已被证明能够独立发挥作用或以相互关联的方式调节子囊菌粗糙脉孢菌中分生孢子形成的表达。最近,已鉴定出生物钟的几个分子相关物,其形式为早晨特异性生物钟控制基因ccg-1和ccg-2。在本文中,我们报告了对ccg-1调控的研究,ccg-1是一个大量表达且调控复杂的基因。与粗糙脉孢菌中生物钟控制基因和分生孢子形成基因的新共识一致,我们报告ccg-1的表达受光诱导,并表明这种诱导独立于光对生物钟的直接影响。尽管在缺乏功能性生物钟的菌株中该基因的生物钟调控丧失,但ccg-1的表达仍不是组成型的,而是与这些菌株中观察到的发育潜能变化一致地波动。ccg-1的光诱导需要粗糙脉孢菌wc-1和wc-2基因的产物,但令人惊讶的是,在cot-1(一个编码cAMP依赖性蛋白激酶的基因)的条件突变体中,对wc-2的需求受到抑制。这些数据为一个复杂的调控网络提供了见解,该网络至少涉及生物钟控制、光控制、代谢控制,并且很可能涉及发育调控,从而控制ccg-1的表达。

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