Department of Biology, Yonsei University, Seoul 120-749, Korea.
Planta. 2011 Jun;233(6):1073-85. doi: 10.1007/s00425-011-1362-7. Epub 2011 Feb 3.
In the present study, we investigated protein characteristics and physiological functions of PRBP (plastid RNA-binding protein) in Nicotiana benthamiana. PRBP fused to green fluorescent protein (GFP) localized to the chloroplasts. Recombinant PRBP proteins bind to single-stranded RNA in vitro, but not to DNA in a double- or a single-stranded form. Virus-induced gene silencing (VIGS) of PRBP resulted in leaf yellowing in N. benthamiana. At the cellular level, PRBP depletion disrupted chloroplast biogenesis: chloroplast number and size were reduced, and the thylakoid membrane was poorly developed. In PRBP-silenced leaves, protein levels of plastid-encoded genes were significantly reduced, whereas their mRNA levels were normal regardless of their promoter types indicating that PRBP deficiency primarily affects translational or post-translational processes. Depletion of PRBP impaired processing of the plastid-encoded 4.5S ribosomal RNA, resulting in accumulation of the larger precursor rRNAs in the chloroplasts. In addition, PRBP-deficient chloroplasts contained significantly reduced levels of mature 4.5S and 5S rRNAs in the polysomal fractions, indicating decreased chloroplast translation. These results suggest that PRBP plays a role in chloroplast rRNA processing and chloroplast development in higher plants.
在本研究中,我们研究了 PRBP(质体 RNA 结合蛋白)在烟草原生质体中的蛋白质特性和生理功能。PRBP 与绿色荧光蛋白(GFP)融合后定位于叶绿体。重组 PRBP 蛋白在体外结合单链 RNA,但不结合双链或单链形式的 DNA。PRBP 的病毒诱导基因沉默(VIGS)导致烟草原生质体叶片变黄。在细胞水平上,PRBP 耗竭破坏了叶绿体的生物发生:叶绿体数量和大小减少,类囊体膜发育不良。在 PRBP 沉默的叶片中,质体编码基因的蛋白水平显著降低,而其 mRNA 水平正常,无论其启动子类型如何,这表明 PRBP 缺乏主要影响翻译或翻译后过程。PRBP 耗竭会损害质体编码的 4.5S 核糖体 RNA 的加工,导致较大的前体 rRNA 在叶绿体中积累。此外,PRBP 缺陷型叶绿体在多核糖体部分中成熟的 4.5S 和 5S rRNA 水平显著降低,表明叶绿体翻译减少。这些结果表明,PRBP 在高等植物的叶绿体 rRNA 加工和叶绿体发育中起作用。