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The TIP GROWTH DEFECTIVE1 S-Acyl Transferase Regulates Plant Cell Growth in ArabidopsisW⃞

机译:提示生长缺陷1 S-酰基转移酶调节拟南芥中植物细胞的生长

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摘要

TIP GROWTH DEFECTIVE1 (TIP1) of Arabidopsis thaliana affects cell growth throughout the plant and has a particularly strong effect on root hair growth. We have identified TIP1 by map-based cloning and complementation of the mutant phenotype. TIP1 encodes an ankyrin repeat protein with a DHHC Cys-rich domain that is expressed in roots, leaves, inflorescence stems, and floral tissue. Two homologues of TIP1 in yeast (Saccharomyces cerevisiae) and human (Homo sapiens) have been shown to have S-acyl transferase (also known as palmitoyl transferase) activity. S-acylation is a reversible hydrophobic protein modification that offers swift, flexible control of protein hydrophobicity and affects protein association with membranes, signal transduction, and vesicle trafficking within cells. We show that TIP1 binds the acyl group palmitate, that it can rescue the morphological, temperature sensitivity, and yeast casein kinase2 localization defects of the yeast S-acyl transferase mutant akr1Δ, and that inhibition of acylation in wild-type Arabidopsis roots reproduces the Tip1− mutant phenotype. Our results demonstrate that S-acylation is essential for normal plant cell growth and identify a plant S-acyl transferase, an essential research tool if we are to understand how this important, reversible lipid modification operates in plant cells.
机译:拟南芥的TIP生长缺陷1(TIP1)影响整个植物的细胞生长,并且对根毛的生长具有特别强的作用。我们已经通过基于图的克隆和突变表型的互补确定了TIP1。 TIP1编码具有DHHC Cys富集结构域的锚蛋白重复蛋白,该结构域在根,叶,花序茎和花组织中表达。酵母(Saccharomyces cerevisiae)和人(Homo sapiens)中TIP1的两个同源物已显示具有S-酰基转移酶(也称为棕榈酰基转移酶)活性。 S-酰化是可逆的疏水性蛋白质修饰,可快速,灵活地控制蛋白质疏水性,并影响蛋白质与膜的结合,信号转导和细胞内小泡的运输。我们表明,TIP1结合酰基棕榈酸酯,它可以挽救酵母S-酰基转移酶突变体akr1Δ的形态,温度敏感性和酵母酪蛋白激酶2定位缺陷,并且抑制野生型拟南芥根中的酰化作用可重现Tip1 −突变表型。我们的结果表明,S-酰化对于正常植物细胞的生长至关重要,并鉴定出植物S-酰基转移酶,这是一项必不可少的研究工具,如果我们要了解这种重要的,可逆的脂质修饰在植物细胞中的运作方式。

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