Vandana Shweta, Bhatla Satish C
Department of Botany, Gargi College, University of Delhi, New Delhi, India.
Plant Signal Behav. 2009 Jul;4(7):604-9. doi: 10.4161/psb.4.7.9165. Epub 2009 Jul 3.
Oil bodies are spherical entities containing a triacylglycerol (TAG) matrix encased by a phospholipid monolayer, which is stabilized by oil body-specific proteins, principally oleosins. Biochemical investigations in the recent past have also demonstrated the expression of calcium-binding proteins, called caleosins, as a component of oil body membranes during seed germination. Using DM-Bodipy-phenylalkylamine (PAA; a fluorescent derivative of phenylalkylamine)-a fluorescent probe known to bind L-type calcium channel proteins, present investigations provide the first report on the localization and preferential accumulation of putative calcium channel proteins on/around oil bodies during peak lipolytic phase in protoplasts derived from dark-grown sunflower (Helianthus annuus L. cv Morden) seedling cotyledons. Specificity of DM-Bodipy-PAA labeling was confirmed by using bepridil, a non-fluorescent competitor of PAA while non-specific dye accumulation has been ruled out by using Bodipy-FL as control. Co-localization of fluorescence from DM-Bodipy-PAA binding sites (ex: 504 nm; em: 511 nm) and nile red fluorescing oil bodies (ex: 552 nm; em: 636 nm) has been undertaken by epifluorescence and confocal laser scanning microscopy (CLSM). It revealed the affinity of PAA-sensitive ion channels for the oil body surface. Findings from the current investigations highlight the significance of calcium and calcium channel proteins during oil body mobilization in sunflower.
油体是一种球形结构,其内部含有由磷脂单层包裹的三酰甘油(TAG)基质,该磷脂单层由油体特异性蛋白(主要是油质蛋白)稳定。近期的生化研究还表明,在种子萌发过程中,名为钙结合蛋白的钙结合蛋白作为油体膜的组成成分得以表达。利用DM-硼二吡咯-苯烷基胺(PAA;苯烷基胺的荧光衍生物)——一种已知能结合L型钙通道蛋白的荧光探针,本研究首次报道了在黑暗生长的向日葵(Helianthus annuus L. cv Morden)幼苗子叶原生质体的脂肪分解高峰期,假定的钙通道蛋白在油体上/周围的定位和优先积累情况。通过使用PAA的非荧光竞争剂苄普地尔,证实了DM-硼二吡咯-PAA标记的特异性,同时以硼二吡咯-FL作为对照排除了非特异性染料积累。通过落射荧光显微镜和共聚焦激光扫描显微镜(CLSM)对DM-硼二吡咯-PAA结合位点(激发波长:504 nm;发射波长:511 nm)和尼罗红荧光油体(激发波长:552 nm;发射波长:636 nm)的荧光进行了共定位。结果揭示了PAA敏感离子通道对油体表面的亲和力。当前研究的结果突出了钙和钙通道蛋白在向日葵油体动员过程中的重要性。