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Analysis of LuPME3 a pectin methylesterase from Linum usitatissimum revealed a variability in PME proteolytic maturation

机译:LuPME3(一种来自亚麻属植物的果胶甲基酯酶)的分析显示PME蛋白水解成熟度存在差异

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摘要

Pectin methylesterase (PME) catalyzes the de-methylesterification of pectin in plant cell walls during cell elongation. Pectins are mainly composed of α(1, 4)-D-galacturonosyl acid units that are synthesized in a methylesterified form in the Golgi apparatus to prevent any interaction with Ca2+ ions during their intracellular transport. The highly methylesterified pectins are then secreted into the apoplasm and subsequently de-methylesterified in muro by PMEs. This can either induce the formation of pectin gels through the Ca2+ crosslinking of neighboring non-methylesterified chains or create substrates for pectin-degrading enzymes such as polygalacturonases and pectate lyases for the initiation of cell wall loosening. PMEs belong to a large multigene family. Sixty­six PME-related genes are predicted in the Arabidopsis genome. Among them, we have recently shown that AtPME3 (At3g14310), a major basic PME isoform in A. thaliana, is ubiquitously expressed in vascular tissues and play a role in adventitious rooting. In flax (Linum usitatissimum), three genes encoding PMEs have been sequenced so far, including LuPME3, the ortholog of AtPME3. Analysis of the LuPME3 isoform brings new insights into the processing of these proteins.
机译:果胶甲基酯酶(PME)催化细胞伸长过程中果胶在植物细胞壁中的去甲基化作用。 果胶主要由α(1,4)-D-半乳糖醛酸基单元组成,这些单元在甲酯化后合成形式在高尔基体中防止在细胞内运输过程中与Ca 2 + 离子发生任何相互作用。 高度甲基化的果胶被分泌到无浆质中 然后通过PME在Muro中脱甲基化。这可以通过相邻的非甲基酯化链的Ca 2 + 交联诱导果胶凝胶的形成,也可以为果胶降解酶(例如聚半乳糖醛酸酶和果胶酸裂合酶)创造底物,从而引发细胞壁松动。 PME属于大型多基因家族。在拟南芥基因组中预测有66种与PME相关的基因。 其中,我们最近表明,拟南芥中主要的基本PME亚型AtPME3(At3g14310)在血管组织中广泛表达并发挥作用。 迄今为止,在亚麻(Linum usitatissimum)中,已对三个编码PME的基因进行了测序,包括AtPME3的直系同源基因LuPME3。 LuPME3同工型的分析为这些蛋白质的加工带来了新的见识。

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