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影响莱茵衣藻叶绿体中含rbcL序列转录本寿命的基因元件。

Gene elements that affect the longevity of rbcL sequence-containing transcripts in Chlamydomonas reinhardtii chloroplasts.

作者信息

Singh M, Boutanaev A, Zucchi P, Bogorad L

机构信息

Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Feb 27;98(5):2289-94. doi: 10.1073/pnas.041609798. Epub 2001 Feb 13.

Abstract

The chloroplast gene rbcL encodes the large subunit of the CO(2)-fixing enzyme ribulose-bisphosphate carboxylase. In previous work a target for photo-accelerated degradation of Chlamydomonas reinhardtii rbcL transcripts in vivo was found to lie within the first 63 nucleotides, and a sequence element required for increasing the longevity of transcripts of rbcL-reporter genes was found to occur between nucleotides 170 and 350. Photo-accelerated degradation of rbcL transcripts has been found to require nucleotides 21 to 41. Transcript nucleotides lying between 329 and 334 and between 14 and 27 are essential for stabilizing transcripts in vivo; mutations in either region reduce the longevity of transcripts. It is postulated that the effectiveness of photo-accelerated endonuclease attacks on the nucleotide 21 to 41 region is reduced by physical blockage or distortion of the target sequence by interacting proteins that associate with nucleotides in the 14 to 27 and 329 to 334 regions of the transcripts. Both the nucleotide +329 to +334 stabilizing sequence of rbcL and a transcription enhancing sequence that lies between +126 and +170 encode well conserved (cyanobacteria through angiosperms) amino acid sequences; the evolution of expression control elements within the protein coding sequence of rbcL is considered.

摘要

叶绿体基因rbcL编码二氧化碳固定酶核酮糖-1,5-二磷酸羧化酶的大亚基。在先前的研究中,发现莱茵衣藻rbcL转录本在体内光加速降解的靶点位于前63个核苷酸内,并且发现增加rbcL报告基因转录本寿命所需的序列元件存在于核苷酸170至350之间。已发现rbcL转录本的光加速降解需要核苷酸21至41。位于329至334以及14至27之间的转录本核苷酸对于在体内稳定转录本至关重要;任一区域的突变都会缩短转录本的寿命。据推测,与转录本14至27以及329至334区域中的核苷酸相关联的相互作用蛋白对靶序列的物理阻断或扭曲降低了光加速核酸内切酶对核苷酸21至41区域攻击的有效性。rbcL的核苷酸+329至+334稳定序列以及位于+126至+170之间的转录增强序列均编码高度保守(从蓝细菌到被子植物)的氨基酸序列;文中还讨论了rbcL蛋白质编码序列内表达控制元件的进化。

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