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蛋白激酶A催化的磷酸化作用及其对光敏色素A构象的影响。

Protein kinase A-catalyzed phosphorylation and its effect on conformation in phytochrome A.

作者信息

Lapko V N, Wells T A, Song P S

机构信息

Department of Chemistry, University of Nebraska, Lincoln 68588-0304, USA.

出版信息

Biochemistry. 1996 May 28;35(21):6585-94. doi: 10.1021/bi9529364.

Abstract

Phytochromes are ubiquitous red/far-red wavelength-sensitive photoreceptors in plants. Oat phytochrome A is a phosphoprotein. Phytochrome A (phyA) possesses two spatially different sites for phosphorylation with cAMP-dependent protein kinase (PKA) [McMichael & Lagarias (1990) Biochemistry 29, 3872-3878]. To assess the modulation of protein conformation by phosphorylation/dephosphorylation and its possible implication in phytochrome-mediated signal transduction, the conformations of phytochrome have been probed by PKA catalyzed phosphorylation. The phosphorylated species were purified and analyzed, along with untreated phytochrome, by limited proteolysis, circular dichroism (CD) and fluorescence quenching measurements. No significant changes in secondary structure of the phyA molecule after its phosphorylation were observed by CD. However, a subtle topographic and/or electrostatic effect of the phytochrome phosphorylation was detected by the time-resolved fluorescence quenching of Trp residues with Cs+ ions. N-Terminal phosphorylation at Ser17 was unique to the Pr form, but both Pr and Pfr phytochromes were phosphorylated at the hinge region to some extent. Phosphorylation at the hinge region resulted in noticeable changes in the proteolytic patterns, inhibiting cleavage near the phosphorylation site and favoring tryptic digestion of the Lys536-Asn537 peptide bond. Phosphorylation at the N-terminus did not cause observable changes in the helical structure of this region, but had an inhibitory effect on proteinase V8 accessibility at a site near the chromophore attachment. The functional relevance of protein phosphorylation of phyA is also discussed.

摘要

光敏色素是植物中普遍存在的对红/远红波长敏感的光感受器。燕麦光敏色素A是一种磷蛋白。光敏色素A(phyA)具有两个与cAMP依赖性蛋白激酶(PKA)磷酸化的空间不同位点[麦克迈克尔和拉加里亚斯(1990年)《生物化学》29卷,3872 - 3878页]。为了评估磷酸化/去磷酸化对蛋白质构象的调节及其在光敏色素介导的信号转导中的可能意义,通过PKA催化的磷酸化对光敏色素的构象进行了探测。对磷酸化产物进行了纯化和分析,并与未处理的光敏色素一起通过有限蛋白酶解、圆二色性(CD)和荧光猝灭测量进行研究。通过CD未观察到phyA分子磷酸化后二级结构的显著变化。然而,通过用Cs +离子对色氨酸残基进行时间分辨荧光猝灭检测到了光敏色素磷酸化的细微拓扑和/或静电效应。Ser17处的N端磷酸化是Pr形式特有的,但Pr和Pfr光敏色素在铰链区都有一定程度的磷酸化。铰链区的磷酸化导致蛋白水解模式发生明显变化,抑制了磷酸化位点附近的切割,并有利于胰蛋白酶对Lys536 - Asn537肽键的消化。N端的磷酸化在该区域的螺旋结构上未引起可观察到的变化,但对发色团附着位点附近的蛋白酶V8可及性有抑制作用。还讨论了phyA蛋白质磷酸化的功能相关性。

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