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S-acylation-dependent association of the calcium sensor CBL2 with the vacuolar membrane is essential for proper abscisic acid responses

机译:钙传感器CBL2与液泡膜的S-酰化依赖性缔合对于适当的脱落酸反应至关重要

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Calcineurin B-like (CBL) proteins contribute to decoding calcium signals by interacting with CBL-interacting protein kinases (CIPKs). Currently, there is still very little information about the function and specific targeting mechanisms of CBL proteins that are localized at the vacuolar membrane. In this study, we focus on CBL2, an abundant vacuolar membrane-localized calcium sensor of unknown function from Arabidopsis thaliana. We show that vacuolar targeting of CBL2 is specifically brought about by S-acylation of three cysteine residues in its N-terminus and that CBL2 S-acylation and targeting occur by a Brefeldin A-insensitive pathway. Loss of CBL2 function renders plants hypersensitive to the phytohormone abscisic acid (ABA) during seed germination and only fully S-acylated and properly vacuolar-targeted CBL2 proteins can complement this mutant phenotype. These findings define an S-acylation-dependent vacuolar membrane targeting pathway for proteins and uncover a crucial role of vacuolar calcium sensors in ABA responses.
机译:钙调神经磷酸酶B样(CBL)蛋白通过与与CBL相互作用的蛋白激酶(CIPK)相互作用,有助于解码钙信号。当前,关于位于液泡膜上的CBL蛋白的功能和特异性靶向机制的信息仍然很少。在这项研究中,我们专注于CBL2,一种来自拟南芥的功能未知的丰富液泡膜定位钙传感器。我们显示液泡靶向CBL2是由其N端的三个半胱氨酸残基的S-酰化引起的,而CBL2 S-酰化和靶向是通过布雷菲德菌素A不敏感的途径发生的。 CBL2功能的丧失使植物在种子发芽过程中对植物激素脱落酸(ABA)高度敏感,只有完全S-酰化和液泡靶向的CBL2蛋白才能补充这种突变表型。这些发现定义了蛋白质的S-酰化依赖性液泡膜靶向途径,并揭示了液泡钙传感器在ABA反应中的关键作用。

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