Eichacker L A, Soll J, Lauterbach P, Rüdiger W, Klein R R, Mullet J E
Department of Botany, University of Munich, Federal Republic of Germany.
J Biol Chem. 1990 Aug 15;265(23):13566-71.
An in vitro translation system using lysed etioplasts was developed to test if the accumulation of plastid-encoded chlorophyll a apoproteins is dependent on the de novo synthesis of chlorophyll a. The P700 apoproteins, CP47 and CP43, were not radiolabeled in pulsechase translation assays employing lysed etioplasts in the absence of added chlorophyll precursors. When chlorophyllide a plus phytylpyrophosphate were added to lysed etioplast translation assays in the dark, chlorophyll a was synthesized and radiolabeled P700 apoproteins, CP47 and CP43, and a protein which comigrates with D1 accumulated. Chlorophyllide a or phytylpyrophosphate added separately to the translation assay in darkness did not induce chlorophyll a formation or chlorophyll a apoprotein accumulation. Chlorophyll a formation and chlorophyll a apoprotein accumulation were also induced in the lysed etioplast translation system by the photoreduction of protochlorophyllide to chlorophyllide a in the presence of exogenous phytylpyrophosphate. Accumulation of radiolabeled CP47 was detectable when very low levels of chlorophyll a were synthesized de novo (less than 0.01 nmol/10(7) plastids), and radiolabel increased linearly with increasing de novo chlorophyll a formation. Higher levels of de novo synthesized chlorophyll a were required prior to detection of radiolabel incorporation into the P700 apoproteins and CP43 (greater than 0.01 nmol/10(7) plastids). Radiolabel incorporation into the P700 apoproteins, CP47 and CP43, saturated at a chlorophyll a concentration which corresponds to 50% of the etioplast protochlorophyllide content (0.06 nmol of chlorophyll a/10(7) plastids).
开发了一种使用裂解的黄化质体的体外翻译系统,以测试质体编码的叶绿素a脱辅基蛋白的积累是否依赖于叶绿素a的从头合成。在没有添加叶绿素前体的情况下,使用裂解的黄化质体进行脉冲追踪翻译分析时,P700脱辅基蛋白、CP47和CP43没有被放射性标记。当在黑暗中将叶绿素酸a加植基焦磷酸添加到裂解的黄化质体翻译分析中时,合成了叶绿素a,放射性标记的P700脱辅基蛋白、CP47和CP43以及与D1共迁移的一种蛋白积累。在黑暗中分别添加到翻译分析中的叶绿素酸a或植基焦磷酸不会诱导叶绿素a的形成或叶绿素a脱辅基蛋白的积累。在存在外源植基焦磷酸的情况下,通过原叶绿素酸的光还原为叶绿素酸a,在裂解的黄化质体翻译系统中也诱导了叶绿素a的形成和叶绿素a脱辅基蛋白的积累。当从头合成的叶绿素a水平非常低(小于0.01 nmol/10⁷个质体)时,可检测到放射性标记的CP47的积累,并且放射性标记随着从头合成的叶绿素a的增加而线性增加。在检测到放射性标记掺入P700脱辅基蛋白和CP43之前,需要更高水平的从头合成的叶绿素a(大于0.01 nmol/10⁷个质体)。放射性标记掺入P700脱辅基蛋白、CP47和CP43在叶绿素a浓度达到黄化质体原叶绿素酸含量的50%(0.06 nmol叶绿素a/10⁷个质体)时达到饱和。