首页> 美国卫生研究院文献>Plant Physiology >Detection in Vivo of Very Rapid Red Light-Induced Calcium-Sensitive Protein Phosphorylation in Etiolated Wheat (Triticum aestivum) Leaf Protoplasts.
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Detection in Vivo of Very Rapid Red Light-Induced Calcium-Sensitive Protein Phosphorylation in Etiolated Wheat (Triticum aestivum) Leaf Protoplasts.

机译:黄化小麦叶片原生质体中非常快速的红光诱导的钙敏感蛋白磷酸化的体内检测。

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摘要

Etiolated wheat (Triticum aestivum cv Mercia) leaf protoplasts respond to brief red-light irradiation by increasing in volume over a 10-min incubation period (M.E. Bossen, H.A. Dassen, R.E. Kendrick, W.J. Vredenberg [1988] Planta 174: 94-100). When the calcium-sensitive dye Fluo-3 was incorporated into these protoplasts, red-light irradiation initiated calcium transients lasting about 2 min (P.S. Shacklock, N.D. Read, A.J. Trewavas [1992] Nature 358: 153-155). Release of calcium in the protoplasts by photolysis of incorporated 1-{2-amino-5-[1-hydroxy-1-(2-nitro-4, 5-methylenedioxyphenyl)-methyl]-phenoxy}-2-(2[prime]-amino-5[prime]-methylp henoxy)-ethane-N,N, N[prime],N[prime] -tetraccetic acid, tetrasodium salt (caged calcium) or caged inositol trisphosphate frequently induced transient increases in intracellular calcium levels, although the kinetics of these changes showed variation between experiments. Upon exposure to red light, a pronounced increase in the phosphorylation of a 70-kD and to a lesser extent a 60-kD peptide was observed, commencing within 15 s and continuing for up to 2 min. Simultaneous far-red and red irradiation attenuated the response. Upon release of incorporated caged calcium by cage photolysis, the labeling of these two peptides was greatly increased. When incorporated caged inositol trisphosphate was photolyzed, only the labeling of the 70-kD peptide was enhanced. Phosphorylation of the 70-kD peptide was also increased when extracellular calcium was elevated, but it decreased with increasing extracellular EGTA. These data thus provide direct evidence for the operation of an in vivo transduction sequence involving red light-dependent, calcium-sensitive protein phosphorylation.
机译:改良的小麦(Triticum aestivum cv Mercia)叶片原生质体在10分钟的孵育时间内通过增加体积来响应短暂的红光照射(ME Bossen,HA Dassen,RE Kendrick,WJ Vredenberg [1988] Planta 174:94-100) 。当将钙敏感染料Fluo-3掺入到这些原生质体中时,红光辐射引发持续约2分钟的钙瞬变(P.S.Shacklock,N.D.Read,A.J.Trewavas [1992] Nature 358:153-155)。通过掺入的1- {2-氨基-5- [1-羟基-1-(2-硝基-4,5-亚甲基二氧苯基)-甲基]-苯氧基} -2-(2 [底漆]的光解,释放钙在原生质体中的释放]-氨基-5 [prime]-甲基对苯氧基)-乙烷-N,N,N [prime],N [prime]-四辛酸,四钠盐(笼中钙)或笼中的肌醇三磷酸酯经常引起细胞内钙水平的瞬时升高,尽管这些变化的动力学表明实验之间存在差异。暴露于红光后,观察到70 kD的磷酸化显着增加,而在较小程度上观察到60 kD的磷酸化,开始于15 s内并持续长达2分钟。同时进行远红色和红色照射会减弱响应。通过笼子光解释放引入的笼中钙后,这两种肽的标记大大增加。当掺入笼中的肌醇三磷酸肌醇被光解时,仅增强了70 kD肽的标记。当细胞外钙升高时,70 kD肽的磷酸化也增加,但随着细胞外EGTA的增加而降低。因此,这些数据为涉及涉及红光的钙敏感蛋白磷酸化的体内转导序列的操作提供了直接的证据。

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