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使用一种可逆转录抑制剂DRB来研究特定蛋白质在海兔眼昼夜节律系统中的作用。

The use of a reversible transcription inhibitor, DRB, to investigate the involvement of specific proteins in the ocular circadian system of Aplysia.

作者信息

Koumenis C, Tran Q, Eskin A

机构信息

Department of Biochemical & Biophysical Sciences, University of Houston, TX 77204, USA.

出版信息

J Biol Rhythms. 1996 Mar;11(1):45-56. doi: 10.1177/074873049601100105.

Abstract

Previously, the effects of 2-h treatments with the reversible transcription inhibitor 5,6-dichloro-1-beta-D-ribobenzimidazole (DRB) on the phase of the circadian rhythm in the eye of Aplysia californica were studied. Here we report a study of the effects of DRB on protein synthesis and a more detailed investigation of the effects of DRB on the phase of the circadian rhythm. Treatments of DRB for 30 min reduced the rate of transcription to about 30% of control values, and this inhibition reversed completely within 2 h after the end of the treatment. A phase-response curve was obtained for 30-min treatments of DRB. Shorter (30 min) treatments with DRB produced phase shifts comparable to those produced by treatments with DRB for 2 h. The phase-response curve obtained using 30-min treatments of DRB was similar to one obtained using 2-h treatments with respect to the phase at which DRB exerts its maximum effect on the rhythm (around circadian time [CT] 6). However, some aspects of the two phase-response curves were different. The effect of DRB on the phase of the rhythm appeared rapidly after removal of DRB treatments given during CT 22-6, but the effects of DRB on the phase of the rhythm appeared more slowly (approximately 10 h) after the treatments given during CT 6-12. Because the effects of DRB on the phase of the overt rhythm appear to be rapid at a particular phase, it is very likely that DRB affects the phase of the rhythm by altering the synthesis of proteins during or shortly after the treatment. Thus we searched for proteins whose synthesis was altered by DRB. Incorporation of labeled amino acids into 2 proteins was found to be altered during the DRB treatment, whereas 15 proteins were affected after the DRB treatment. Among the proteins affected during or shortly after the DRB treatment were four previously identified proteins affected by other treatments that can shift the phase of the eye circadian rhythm. These four proteins are worthy of further study as possible candidates for components of the circadian oscillator.

摘要

此前,研究了用可逆转录抑制剂5,6-二氯-1-β-D-核糖苯并咪唑(DRB)进行2小时处理对加州海兔眼睛昼夜节律相位的影响。在此,我们报告一项关于DRB对蛋白质合成影响的研究,以及对DRB对昼夜节律相位影响的更详细调查。用DRB处理30分钟可将转录速率降低至对照值的约30%,并且这种抑制在处理结束后2小时内完全逆转。获得了DRB 30分钟处理的相位响应曲线。用DRB进行较短时间(30分钟)的处理产生的相位偏移与用DRB处理2小时产生的相位偏移相当。使用DRB 30分钟处理获得的相位响应曲线与使用2小时处理获得的曲线在DRB对节律发挥最大作用的相位(大约在昼夜时间[CT]6左右)方面相似。然而,两条相位响应曲线的某些方面有所不同。在CT 22 - 6期间给予DRB处理后去除DRB后,DRB对节律相位的影响迅速出现,但在CT 6 - 12期间给予处理后,DRB对节律相位的影响出现得更慢(约10小时)。由于DRB在特定相位对明显节律相位的影响似乎很快,很可能DRB通过在处理期间或处理后不久改变蛋白质合成来影响节律相位。因此,我们寻找其合成被DRB改变的蛋白质。发现在DRB处理期间,标记氨基酸掺入2种蛋白质的情况发生了改变,而在DRB处理后有15种蛋白质受到影响。在DRB处理期间或处理后不久受到影响的蛋白质中,有4种是先前已鉴定出受其他可改变眼睛昼夜节律相位处理影响的蛋白质。这4种蛋白质作为昼夜振荡器组件的可能候选者值得进一步研究。

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