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果蝇新的tim(失明)突变影响行为节律,但不影响周期性羽化。

The novel Drosophila tim(blind) mutation affects behavioral rhythms but not periodic eclosion.

作者信息

Wülbeck Corinna, Szabo Gisela, Shafer Orie T, Helfrich-Förster Charlotte, Stanewsky Ralf

机构信息

Universität Regensburg, Institut für Zoologie, Lehrstuhl für Entwicklungsbiologie, 93040 Regensburg, Germany.

出版信息

Genetics. 2005 Feb;169(2):751-66. doi: 10.1534/genetics.104.036244. Epub 2004 Nov 1.

Abstract

Circadian clock function depends on the tightly regulated exclusion or presence of clock proteins within the nucleus. A newly induced long-period timeless mutant, tim(blind), encodes a constitutively hypophosphorylated TIM protein. The mutant protein is not properly degraded by light, and tim(blind) flies show abnormal behavioral responses to light pulses. This is probably caused by impaired nuclear accumulation of TIM(BLIND) protein, which we observed in brain pacemaker neurons and photoreceptor cells of the compound eye. tim(blind) encodes two closely spaced amino acid changes compared to the wild-type TIM protein; one of them is within a putative nuclear export signal of TIM. Under constant conditions, tim(blind) flies exhibit 26-hr free-running locomotor rhythms, which are not correlated with a period lengthening of eclosion rhythms and period-luciferase reporter-gene oscillations. Therefore it seems possible that TIM--in addition to its well-established role as core clock factor--functions as a clock output factor, involved in determining the period length of adult locomotor rhythms.

摘要

昼夜节律时钟功能取决于细胞核内时钟蛋白的严格调控的排除或存在。一个新诱导的长周期无时间突变体tim(blind),编码一种组成型低磷酸化的TIM蛋白。突变蛋白不能被光正常降解,tim(blind)果蝇对光脉冲表现出异常的行为反应。这可能是由于TIM(BLIND)蛋白的核积累受损所致,我们在复眼的脑起搏器神经元和光感受器细胞中观察到了这种情况。与野生型TIM蛋白相比,tim(blind)编码两个紧密相邻的氨基酸变化;其中一个在TIM的假定核输出信号内。在恒定条件下,tim(blind)果蝇表现出26小时的自由运行运动节律,这与羽化节律的周期延长和周期荧光素酶报告基因振荡无关。因此,除了其作为核心时钟因子的既定作用外,TIM似乎有可能作为时钟输出因子,参与确定成年运动节律的周期长度。

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