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质体中细胞分裂素结合蛋白(70kDa)的鉴定及其在叶绿体中的可能功能。

Cytokinin-binding protein (70 kDa) from etioplasts and amyloplasts of etiolated maize seedlings and chloroplasts of green plants and its putative function.

机构信息

Pushchino Branch of Ovchinnikov-Shemyakin Institute of Bioorganic Chemistry, Russian Academy of Sciences, pr. Nauki 6, Pushchino, Moscow region, 142290 Russia.

出版信息

J Exp Bot. 2010 Jul;61(12):3461-74. doi: 10.1093/jxb/erq170. Epub 2010 Jun 28.

Abstract

Cytokinins regulate chloroplast differentiation and functioning, but their targets in plastids are not known. In this connection, the plastid localization of the 70 kDa cytokinin-binding protein (CBP70) was studied immunocytochemically in 4-d-old etiolated maize seedlings (Zea mays L., cv. Elbrus) using monoclonal antibodies (mAbs) against CBP70 recognizing this protein not only in nuclei and cytoplasm, but also in plastids. CBP70 was detected in the amyloplasts of the root cap and etioplasts of the mesocotyl, stem apex, and leaves encircling the stem axis in the node. Immunogold electron microscopy demonstrated CBP70 localization in amyloplasts outside starch grains and revealed a dependence of CBP70 content in etioplasts on the degree of their inner membrane differentiation: the low CBP70 amount in etioplasts at the early stages of membrane development, the high content in etioplasts with actively developing membranes, and a considerable decrease in plastids with the formed prolamellar body. This suggests that CBP70 is involved in etioplast structure development. CBP70 was also observed in chloroplasts of the bundle sheath of green maize leaves. CBP70 purified from etioplasts mediated trans-zeatin-dependent activation of transcription elongation in vitro in the transcription systems of maize etioplasts and barley chloroplasts, suggesting that CBP70 is a plastid transcription elongation factor or a modulator of plastid elongation factor activity. CBP70 involvement in the cytokinin-dependent regulation of plastid transcription elongation could be essential for the cytokinin control of the biogenesis of this organelle.

摘要

细胞分裂素调节叶绿体的分化和功能,但它们在质体中的靶标尚不清楚。在这方面,使用针对 CBP70 的单克隆抗体(mAb)通过免疫细胞化学研究了 4 天大的黄化玉米幼苗(Zea mays L.,cv.Elbrus)中 70kDa 细胞分裂素结合蛋白(CBP70)的质体定位,该 mAb 不仅识别核和细胞质中的这种蛋白质,还识别质体中的这种蛋白质。CBP70 在前根帽的淀粉体和中胚轴的前质体、茎尖和围绕茎轴的节间叶中被检测到。免疫金电子显微镜显示 CBP70 定位于淀粉体外的淀粉粒,揭示了 CBP70 在质体中的含量取决于其内膜分化的程度:在膜发育的早期阶段质体中 CBP70 的含量较低,在活跃发育的膜的质体中含量较高,在形成前板层体的质体中含量显著降低。这表明 CBP70 参与前质体结构的发育。CBP70 也在绿色玉米叶片的束鞘叶绿体中观察到。从前质体中纯化的 CBP70 在体外玉米前质体和大麦叶绿体的转录系统中介导依赖于玉米素的转录延伸的激活,表明 CBP70 是质体转录延伸因子或质体延伸因子活性的调节剂。CBP70 参与细胞分裂素依赖的质体转录延伸的调节对于细胞分裂素对该细胞器生物发生的控制可能是必不可少的。

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