Lipidomic Analysis of Arabidopsis T-DNA Insertion Lines Leads to Identification and Characterization of C-Terminal Alterations in FATTY ACID DESATURASE 6.

Hannah J Lusk, Nicholas Neumann, Madeline Colter, Mary R Roth, Pamela Tamura, Libin Yao, Sunitha Shiva, Jyoti Shah, Kathrin Schrick, Timothy P Durrett, Ruth Welti
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引用次数: 4

Abstract

Mass-spectrometry-based screening of lipid extracts of wounded and unwounded leaves from a collection of 364 Arabidopsis thaliana T-DNA insertion lines produced lipid profiles that were scored on the number and significance of their differences from the leaf lipid profiles of wild-type plants. The analysis identified Salk_109175C, which displayed alterations in leaf chloroplast glycerolipid composition, including a decreased ratio between two monogalactosyldiacylglycerol (MGDG) molecular species, MGDG(18:3/16:3) and MGDG(18:3/18:3). Salk_109175C has a confirmed insertion in the At5g64790 locus; the insertion did not co-segregate with the recessive lipid phenotype in the F2 generation of a wild-type (Columbia-0) × Salk_109175C cross. The altered lipid compositional phenotype mapped to the At4g30950 locus, which encodes the plastidial ω-6 desaturase FATTY ACID DESATURASE 6 (FAD6). Sequencing revealed a splice-site mutation, leading to the in-frame deletion of 13 amino acids near the C-terminal end of the 448 amino acid protein. Heterologous expression in yeast showed that this deletion eliminates desaturase activity and reduces protein stability. Sequence comparison across species revealed that several amino acids within the deletion are conserved in plants and cyanobacteria. Individual point mutations in four conserved residues resulted in 77-97% reductions in desaturase activity, while a construct with all four alanine substitutions lacked activity. The data suggest that the deleted region of FAD6, which is on the C-terminal side of the four putative transmembrane segments and the histidine boxes putatively involved in catalysis, is critical for FAD6 function.

Abstract Image

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拟南芥T-DNA插入系的脂质组学分析导致脂肪酸去饱和酶6 c端改变的鉴定和表征。
利用质谱法对364个拟南芥T-DNA插入系中受伤和未受伤叶片的脂质提取物进行筛选,得到了与野生型植物叶片脂质谱差异的数量和显著性评分。分析发现,Salk_109175C的叶片叶绿体甘油组成发生了变化,包括MGDG(18:3/16:3)和MGDG(18:3/18:3)两种单半乳糖二酰基甘油(MGDG)分子种类之间的比例降低。Salk_109175C在At5g64790位点有一个确定的插入;在野生型(Columbia-0) × Salk_109175C杂交的F2代中,插入不与隐性脂质表型共分离。改变的脂质组成表型定位于At4g30950位点,该位点编码可降解ω-6去饱和酶脂肪酸去饱和酶6 (FAD6)。测序显示一个剪接位点突变,导致帧内448个氨基酸的蛋白c端附近的13个氨基酸缺失。在酵母中的异种表达表明,这种缺失消除了去饱和酶的活性,降低了蛋白质的稳定性。跨物种的序列比较显示,缺失的几个氨基酸在植物和蓝藻中是保守的。四个保守残基的单个点突变导致去饱和酶活性降低77-97%,而所有四个丙氨酸取代的构建体缺乏活性。这些数据表明,FAD6的缺失区域位于四个推测的跨膜片段的c端,以及推测参与催化的组氨酸盒,对FAD6的功能至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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