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多种协调控制有助于黑麦叶片中1,5-二磷酸核酮糖羧化酶/加氧酶亚基的平衡表达。

Multiple coordinate controls contribute to a balanced expression of ribulose-1,5-bisphosphate carboxylase/oxygenase subunits in rye leaves.

作者信息

Winter U, Feierabend J

机构信息

Botanisches Institut, J. W. Goethe-Universität, Frankfurt am Main, Federal Republic of Germany.

出版信息

Eur J Biochem. 1990 Jan 26;187(2):445-53. doi: 10.1111/j.1432-1033.1990.tb15324.x.

Abstract

In the leaves of rye (Secale cereale L.), control mechanisms acting at multiple molecular levels contribute to a coordinate expression of the subunit polypeptides of ribulose-1,5-bisphosphate carboxylase. The relevance and hierarchy of the different control steps were evaluated by comparing the time courses of changes in levels of translatable mRNA, rates of in vivo amino acid incorporation, and the turnover of subunit polypeptides after selective interference with translation at either cytoplasmic 80S ribosomes, or at the 70S ribosomes of the chloroplast, by compartment-specific inhibitors, or by the use of 70S-ribosome-deficient leaves. The latter were generated by growing the plants at a non-permissive elevated temperature of 32 degrees C. The rates of synthesis of the two ribulose-1,5-bisphosphate carboxylase subunits were most rapidly adapted to each other by translational controls. Within 0.5-2.5 h after selective inhibition of the synthesis of either subunit, that of the other subunit made in the unaffected compartment also declined by more than 90% without any marked change in its mRNA. After prolonged inhibition (24 h) of either cytoplasmic or chloroplast protein synthesis, the levels of mRNAs for both subunits were greatly diminished. In rye, the mRNA levels for both subunits changed under all experimental conditions tested in a closely parallel manner and appeared to be always maintained in a balanced, fairly constant ratio by strong coordinate controls. Even 70S-ribosome-deficient leaves contained mRNAs for both the small and the large subunits, although only in small amounts. The mRNAs for both subunits were also markedly further decreased in 70S-ribosome-deficient leaves after application of an inhibitor of cytoplasmic translation. MDMP [2-(4-methyl-2,6-dinitroanilino)-N-methylpropionamide], suggesting that the suppression of the large subunit mRNA in the plastids was not mediated through feedback effects of accumulating unassembled large subunits. Coordinate controls at both the mRNA and the translational level require a bidirectional exchange of regulatory signals between chloroplast and cytoplasm. However, these controls were not absolutely restrictive and allowed low rates of uncoupled synthesis of either large or small subunits. Large subunits made in the presence of MDMP were stable over 24 h. However, unassembled small subunits synthesized in 70S-ribosome-deficient leaves were degraded with a half-time of 10.5 h, in contrast to their behavior after integration into the holoprotein in normal leaves, where no turnover was detected. The proteolytic removal of surplus free small subunits is regarded as a final post-translational fine-tuning step to establish a balanced subunit stoichiometry in leaves.

摘要

在黑麦(Secale cereale L.)叶片中,作用于多个分子水平的调控机制有助于核酮糖-1,5-二磷酸羧化酶亚基多肽的协调表达。通过比较在细胞质80S核糖体或叶绿体70S核糖体处进行选择性翻译干扰后,可翻译mRNA水平的变化时间进程、体内氨基酸掺入率以及亚基多肽的周转情况,来评估不同调控步骤的相关性和层级关系。选择性翻译干扰可通过使用细胞器特异性抑制剂,或利用70S核糖体缺陷型叶片来实现。70S核糖体缺陷型叶片是通过将植物种植在32℃的非允许高温下培育而成。核酮糖-1,5-二磷酸羧化酶两个亚基的合成速率通过翻译调控能最迅速地相互适应。在选择性抑制任一亚基的合成后0.5 - 2.5小时内,未受影响的细胞器中合成的另一个亚基的合成速率也下降了90%以上,而其mRNA没有明显变化。在长时间抑制(24小时)细胞质或叶绿体蛋白质合成后,两个亚基的mRNA水平都大幅下降。在黑麦中,在所有测试的实验条件下,两个亚基的mRNA水平都以非常平行的方式变化,并且似乎总是通过强大的协调调控维持在平衡、相当恒定的比例。即使是70S核糖体缺陷型叶片也含有小亚基和大亚基的mRNA,尽管含量很少。在应用细胞质翻译抑制剂MDMP [2-(4-甲基-2,6-二硝基苯胺)-N-甲基丙酰胺]后,70S核糖体缺陷型叶片中两个亚基的mRNA也显著进一步下降,这表明质体中大亚基mRNA的抑制不是通过积累未组装的大亚基的反馈效应介导的。mRNA和翻译水平的协调调控需要叶绿体和细胞质之间双向交换调控信号。然而,这些调控并非绝对严格,允许大亚基或小亚基有低水平的解偶联合成。在MDMP存在下合成的大亚基在24小时内是稳定的。然而,在70S核糖体缺陷型叶片中合成的未组装小亚基以10.5小时的半衰期被降解,这与它们在正常叶片中整合到全蛋白后的行为相反,在正常叶片中未检测到周转。多余游离小亚基的蛋白水解去除被视为在叶片中建立平衡亚基化学计量的最终翻译后微调步骤。

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