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BcLTP是小白菜中一种新型的脂质转移蛋白,它可能会分泌并结合细胞外钙调蛋白。

BcLTP, a novel lipid transfer protein in Brassica chinensis, may secrete and combine extracellular CaM.

作者信息

Wang Chunming, Xie Wanqin, Chi Fang, Hu Wenquan, Mao Guohong, Sun Daye, Li Cuifeng, Sun Ying

机构信息

Institute of Molecular Cell Biology, Hebei Normal University, Shijiazhuang, 050016, China.

出版信息

Plant Cell Rep. 2008 Jan;27(1):159-69. doi: 10.1007/s00299-007-0434-4. Epub 2007 Sep 22.

Abstract

Lipid transfer proteins in plants are believed to be involved in many processes of cell physiology and development. In this work, a full-length cDNA encoding a novel lipid transfer protein, designated BcLTP was isolated from Brassica chinensis. At least two copies of BcLTP are present in whole genome of B. chinensis, and its transcripts preferably accumulate in second-year organs, implying its role in reproductive growth stage. The 118 amino acid sequence deduced from a 354 bp open reading frame (ORF) shares common features with other members of plants LTPs family. A putative signal peptide at the N terminus was tested for secretion function by the yeast signal sequence trap (YSST) system, and further confirmed by vesicular and extracellular localization of YFP fusion protein. A highly conserved CaM binding site at C terminus was found and the binding properties with two representative CaM isoforms, one is convergent AtCaM2, one is divergent SCaM5, were determined by gel overlay. We found that convergent AtCaM2 prefer high concentration of Ca(2+) for binding BcLTP, while SCaM5 does not depend on Ca(2+ )concentration too much for binding BcLTP. The lipid binding feature of BcLTP was demonstrated using florescence-marked 1-pyrenedodecanoic acid, which can be enhanced by AtCaM2 in Ca(2+ )dependent manner and by SCaM5 in either presence or absence of Ca(2+). The collected data suggest that BcLTP may secrete and combine extracellular CaM isoforms, which in turn, facilitate lipid binding of BcLTP via Ca(2+) mediated signaling.

摘要

植物中的脂质转移蛋白被认为参与细胞生理和发育的许多过程。在这项研究中,从青菜中分离出一个编码新型脂质转移蛋白的全长cDNA,命名为BcLTP。青菜全基因组中至少存在两个BcLTP拷贝,其转录本在二年生器官中优先积累,这表明它在生殖生长阶段发挥作用。从一个354 bp的开放阅读框(ORF)推导的118个氨基酸序列与植物LTPs家族的其他成员具有共同特征。通过酵母信号序列捕获(YSST)系统检测了N端的一个假定信号肽的分泌功能,并通过YFP融合蛋白的囊泡和细胞外定位进一步证实。在C端发现了一个高度保守的CaM结合位点,并通过凝胶覆盖法测定了它与两种代表性CaM亚型的结合特性,一种是趋同的AtCaM2,一种是趋异的SCaM5。我们发现,趋同的AtCaM2与BcLTP结合时偏好高浓度的Ca(2+),而SCaM5与BcLTP结合时对Ca(2+)浓度的依赖性不大。使用荧光标记的1-芘十二烷酸证明了BcLTP的脂质结合特性,AtCaM2以Ca(2+)依赖的方式增强这种特性,而SCaM5在有或没有Ca(2+)的情况下均能增强。收集到的数据表明,BcLTP可能分泌并结合细胞外CaM亚型,进而通过Ca(2+)介导的信号传导促进BcLTP的脂质结合。

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