USDA-ARS, 3127 Ligon St., Raleigh, NC 27695, USA.
Mol Biol Rep. 2011 Jun;38(5):2967-73. doi: 10.1007/s11033-010-9961-0. Epub 2010 Feb 7.
ADP-glucose pyrophosphorylase (ADPGp, EC 2.7.7.27) is a tetrameric protein composed of two small and two large subunits that catalyzes the biosynthesis of ADP-glucose from glucose-phosphate which is used to provide the glucose subunits for starch biosynthesis. A second cotton gene encoding an ADPGp small subunit has been cloned and characterized. The gene contains eight introns similar to previously reported potato and cotton ADPGp small subunit genes. The deduced translation of the gene contained a poorly conserved transit peptide and well conserved catalytic and regulatory elements typical of other plant ADPGps. The 5' end of the mRNA was cloned and sequenced to identify the transcriptional start site (TSS). The promoter region upstream of the TSS did not contain the core promoter sequence in the typical positions indicating this gene may not use a standard core promoter. Other sequence motifs associated with tissue specific expression and phytohormone response were present. Reverse transcription (RT)-PCR with gene specific primers identified the sites of expression of this gene. Expression was most abundant in the meristem region, and immature stem and relatively lower in starch accumulating roots demonstrating that this gene has a different pattern of expression than the previously reported cotton ADPGp small subunit gene. Additionally this gene was differentially expressed in cotton fibers. The presence of starch was confirmed in developing cotton fibers suggesting that starch metabolism plays a role in cotton fiber development.
ADP-葡萄糖焦磷酸化酶(ADPGp,EC 2.7.7.27)是由两个小亚基和两个大亚基组成的四聚体蛋白,它催化 ADP-葡萄糖的生物合成,由葡萄糖-磷酸提供,用于为淀粉生物合成提供葡萄糖单位。已经克隆和表征了第二个编码 ADPGp 小亚基的棉花基因。该基因包含 8 个内含子,类似于先前报道的马铃薯和棉花 ADPGp 小亚基基因。该基因的推导翻译含有一个保守性差的转运肽和典型的其他植物 ADPGp 的保守性好的催化和调节元件。通过克隆和测序 5'端的 mRNA 来鉴定转录起始位点(TSS)。TSS 上游的启动子区域没有在典型位置包含核心启动子序列,表明该基因可能不使用标准核心启动子。存在与组织特异性表达和植物激素反应相关的其他序列基序。用基因特异性引物进行的反转录(RT)-PCR 鉴定了该基因的表达部位。该基因在顶端区域、未成熟茎和积累淀粉的根中表达最丰富,表明该基因的表达模式与先前报道的棉花 ADPGp 小亚基基因不同。此外,该基因在棉花纤维中差异表达。在发育中的棉花纤维中存在淀粉证实了淀粉代谢在棉花纤维发育中发挥作用。