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拟南芥胞质酰基辅酶A结合蛋白ACBP4、ACBP5和ACBP6在种子发育中具有重叠但不同的作用。

Arabidopsis cytosolic acyl-CoA-binding proteins ACBP4, ACBP5 and ACBP6 have overlapping but distinct roles in seed development.

作者信息

Hsiao An-Shan, Haslam Richard P, Michaelson Louise V, Liao Pan, Chen Qin-Fang, Sooriyaarachchi Sanjeewani, Mowbray Sherry L, Napier Johnathan A, Tanner Julian A, Chye Mee-Len

机构信息

*School of Biological Sciences, The University of Hong Kong, Pokfulam, Hong Kong, China.

†Department of Biological Chemistry, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, U.K.

出版信息

Biosci Rep. 2014 Dec 23;34(6):e00165. doi: 10.1042/BSR20140139.

Abstract

Eukaryotic cytosolic ACBPs (acyl-CoA-binding proteins) bind acyl-CoA esters and maintain a cytosolic acyl-CoA pool, but the thermodynamics of their protein-lipid interactions and physiological relevance in plants are not well understood. Arabidopsis has three cytosolic ACBPs which have been identified as AtACBP4, AtACBP5 and AtACBP6, and microarray data indicated that all of them are expressed in seeds; AtACBP4 is expressed in early embryogenesis, whereas AtACBP5 is expressed later. ITC (isothermal titration calorimetry) in combination with transgenic Arabidopsis lines were used to investigate the roles of these three ACBPs from Arabidopsis thaliana. The dissociation constants, stoichiometry and enthalpy change of AtACBP interactions with various acyl-CoA esters were determined using ITC. Strong binding of recombinant (r) AtACBP6 with long-chain acyl-CoA (C16- to C18-CoA) esters was observed with dissociation constants in the nanomolar range. However, the affinity of rAtACBP4 and rAtACBP5 to these acyl-CoA esters was much weaker (dissociation constants in the micromolar range), suggesting that they interact with acyl-CoA esters differently from rAtACBP6. When transgenic Arabidopsis expressing AtACBP6pro::GUS was generated, strong GUS (β-glucuronidase) expression in cotyledonary-staged embryos and seedlings prompted us to measure the acyl-CoA contents of the acbp6 mutant. This mutant accumulated higher levels of C18:1-CoA and C18:1- and C18:2-CoAs in cotyledonary-staged embryos and seedlings, respectively, in comparison with the wild type. The acbp4acbp5acbp6 mutant showed the lightest seed weight and highest sensitivity to abscisic acid during germination, suggesting their physiological functions in seeds.

摘要

真核细胞胞质酰基辅酶A结合蛋白(ACBPs)能结合酰基辅酶A酯并维持胞质酰基辅酶A库,但它们蛋白质-脂质相互作用的热力学以及在植物中的生理相关性尚未得到充分了解。拟南芥有三种胞质ACBPs,已被鉴定为AtACBP4、AtACBP5和AtACBP6,微阵列数据表明它们在种子中均有表达;AtACBP4在胚胎发育早期表达,而AtACBP5在后期表达。等温滴定量热法(ITC)结合转基因拟南芥株系用于研究拟南芥这三种ACBPs的作用。使用ITC测定AtACBP与各种酰基辅酶A酯相互作用的解离常数、化学计量比和焓变。观察到重组(r)AtACBP6与长链酰基辅酶A(C16至C18辅酶A)酯有强结合,解离常数在纳摩尔范围内。然而,rAtACBP4和rAtACBP5对这些酰基辅酶A酯的亲和力要弱得多(解离常数在微摩尔范围内),表明它们与酰基辅酶A酯的相互作用方式不同于rAtACBP6。当构建表达AtACBP6pro::GUS的转基因拟南芥时,子叶期胚胎和幼苗中强烈的GUS(β-葡萄糖醛酸酶)表达促使我们测量acbp6突变体的酰基辅酶A含量。与野生型相比,该突变体在子叶期胚胎和幼苗中分别积累了更高水平的C18:1-辅酶A以及C18:1-和C18:2-辅酶A。acbp4acbp5acbp6突变体种子重量最轻,萌发期间对脱落酸的敏感性最高,表明它们在种子中具有生理功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2e4/4274664/ea8e0c9fa516/bsr2014-0139i001.jpg

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