Yang Kyoung-Sil, Kim Hee-Seung, Jin Un-Ho, Lee Sang Sook, Park Jong-A, Lim Yong Pyo, Pai Hyun-Sook
Laboratory of Plant Genomics, Korea Research Institute of Bioscience and Biotechnology, Taejon, 305-333, South Korea.
Planta. 2007 May;225(6):1459-69. doi: 10.1007/s00425-006-0453-3. Epub 2007 Jan 10.
BTF3 (betaNAC) was originally isolated as a general transcription factor required for RNA polymerase II-dependent transcription, and later found to be a beta-subunit of nascent-polypeptide-associated complex that has been implicated in regulating protein localization during translation. In this study, virus-induced gene silencing of NbBTF3 encoding a Nicotiana benthamiana homolog of human BTF3 caused leaf yellowing and abnormal leaf morphology without altering the overall growth of the plant. The NbBTF3 gene is constitutively expressed and the NbBTF3-GFP fusion protein is primarily targeted to the nucleus. At the cellular level, downregulation of NbBTF3 expression reduced the chloroplast sizes and chlorophyll contents. The affected cells produced excessive amounts of reactive oxygen species. Furthermore, the transcript level of various plastid- and mitochondria-encoded genes was severely reduced in the NbBTF3-depleted leaf cells. These findings indicate that depletion of NbBTF3 activity preferentially affected development and/or physiology of chloroplasts and mitochondria in plants, possibly by hampering efficient translocation of the nascent organellar proteins into the organelles.
BTF3(βNAC)最初作为RNA聚合酶II依赖性转录所需的一般转录因子被分离出来,后来发现它是新生多肽相关复合物的β亚基,该复合物与翻译过程中蛋白质定位的调节有关。在本研究中,病毒诱导的编码人BTF3烟草本氏烟草同源物的NbBTF3基因沉默导致叶片变黄和叶片形态异常,但不改变植物的整体生长。NbBTF3基因组成型表达,NbBTF3-GFP融合蛋白主要定位于细胞核。在细胞水平上,NbBTF3表达的下调降低了叶绿体大小和叶绿素含量。受影响的细胞产生过量的活性氧。此外,在NbBTF3缺失的叶细胞中,各种质体和线粒体编码基因的转录水平严重降低。这些发现表明,NbBTF3活性的缺失优先影响植物叶绿体和线粒体的发育和/或生理功能,可能是通过阻碍新生细胞器蛋白向细胞器的有效转运。