Cho Sung Ki, Sharma Pooja, Butler Nathaniel M, Kang Il-Ho, Shah Shweta, Rao A Gururaj, Hannapel David J
Plant Biology Major, Iowa State University, Ames, IA 50011-1100, USA.
Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA 50011, USA.
J Exp Bot. 2015 Nov;66(21):6835-47. doi: 10.1093/jxb/erv389. Epub 2015 Aug 17.
Polypyrimidine tract-binding (PTB) proteins are a family of RNA-binding proteins that function in a wide range of RNA metabolic processes by binding to motifs rich in uracils and cytosines. A PTB protein of pumpkin was identified as the core protein of an RNA-protein complex that trafficks RNA. The biological function of the PTB-RNA complex, however, has not been demonstrated. In potato, six PTB proteins have been identified, and two, designated StPTB1 and StPTB6, are similar to the phloem-mobile pumpkin type. RNA binding assays confirmed the interaction of StPTB1 and StPTB6 with discrete pyrimidine-rich sequences of the 3'-untranslated regions of the phloem-mobile mRNA, StBEL5. The promoter of StPTB1 was active in companion cells of phloem in both stem and petioles. Expression of both types was evident in phloem cells of roots and in stolons during tuber formation. RNA accumulation of both PTB proteins was induced by short days in leaves in correlation with enhanced accumulation of StBEL5 RNA. StPTB suppression lines exhibited reduced tuber yields and decreased StBEL5 RNA accumulation, whereas StPTB overexpression lines displayed an increase in tuber production correlated with the enhanced production in stolons of steady-state levels of StBEL5 transcripts and RNA of key tuber identity genes. In StPTB overexpression lines, both the stability and long-distance transport of StBEL5 transcripts were enhanced, whereas in suppression lines stability and transport decreased. Using a transgenic approach, it is shown that the StPTB family of RNA-binding proteins regulate specific stages of development through an interaction with phloem-mobile transcripts of StBEL5.
聚嘧啶序列结合(PTB)蛋白是一类RNA结合蛋白,通过与富含尿嘧啶和胞嘧啶的基序结合,在广泛的RNA代谢过程中发挥作用。南瓜中的一种PTB蛋白被鉴定为转运RNA的RNA-蛋白质复合物的核心蛋白。然而,PTB-RNA复合物的生物学功能尚未得到证实。在马铃薯中,已鉴定出六种PTB蛋白,其中两种命名为StPTB1和StPTB6,与韧皮部可移动的南瓜类型相似。RNA结合试验证实了StPTB1和StPTB6与韧皮部可移动mRNA的3'-非翻译区离散的富含嘧啶序列相互作用,该mRNA为StBEL5。StPTB1的启动子在茎和叶柄韧皮部的伴胞中具有活性。在块茎形成过程中,两种类型在根的韧皮部细胞和匍匐茎中均有明显表达。短日照诱导叶片中两种PTB蛋白的RNA积累,这与StBEL5 RNA积累的增强相关。StPTB抑制系的块茎产量降低,StBEL5 RNA积累减少,而StPTB过表达系的块茎产量增加,这与匍匐茎中StBEL5转录本和关键块茎身份基因RNA的稳态水平增加相关。在StPTB过表达系中,StBEL5转录本的稳定性和长距离运输均增强,而在抑制系中稳定性和运输则降低。通过转基因方法表明,RNA结合蛋白的StPTB家族通过与StBEL5的韧皮部可移动转录本相互作用来调节特定的发育阶段。