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Phosphorylation of serine residues in the N-terminus modulates the activity of ACA8, a plasma membrane Ca2+-ATPase of Arabidopsis thaliana

机译:N末端丝氨酸残基的磷酸化调节ACA8的活性,ACA8是拟南芥的质膜Ca2 + -ATPase

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摘要

ACA8 is a plasma membrane-localized isoform of calmodulin (CaM)-regulated Ca2+-ATPase of Arabidopsis thaliana. Several phosphopeptides corresponding to portions of the regulatory N-terminus of ACA8 have been identified in phospho-proteomic studies. To mimic phosphorylation of the ACA8 N-terminus, each of the serines found to be phosphorylated in those studies (Ser19, Ser22, Ser27, Ser29, Ser57, and Ser99) has been mutated to aspartate. Mutants have been expressed in Saccharomyces cerevisiae and characterized: mutants S19D and S57D—and to a lesser extent also mutants S22D and S27D—are deregulated, as shown by their low activation by CaM and by tryptic cleavage of the N-terminus. The His-tagged N-termini of wild-type and mutant ACA8 (6His-1M-I116) were expressed in Escherichia coli, affinity-purified, and used to analyse the kinetics of CaM binding by surface plasmon resonance. All the analysed mutations affect the kinetics of interaction with CaM to some extent: in most cases, the altered kinetics result in marginal changes in affinity, with the exception of mutants S57D (KD ∼10-fold higher than wild-type ACA8) and S99D (KD about half that of wild-type ACA8). The ACA8 N-terminus is phosphorylated in vitro by two isoforms of A. thaliana calcium-dependent protein kinase (CPK1 and CPK16); phosphorylation of mutant 6His-1M-I116 peptides shows that CPK16 is able to phosphorylate the ACA8 N-terminus at Ser19 and at Ser22. The possible physiological implications of the subtle modulation of ACA8 activity by phosphorylation of its N-terminus are discussed.
机译:ACA8是拟南芥中钙调蛋白(CaM)调节的Ca2 + -ATPase的质膜定位同工型。在磷酸蛋白质组学研究中已经鉴定出对应于ACA8的调节性N末端部分的几种磷酸肽。为了模拟ACA8 N末端的磷酸化,已将在那些研究中被磷酸化的每个丝氨酸(Ser19,Ser22,Ser27,Ser29,Ser57和Ser99)突变为天冬氨酸。突变体已在酿酒酵母中表达并表征:突变体S19D和S57D-以及在较小程度上还突变体S22D和S27D-被失调,如CaM的低活化作用和N末端的胰蛋白酶切割所显示。野生型和突变型ACA8(6His-1M-I116)的His标记的N末端在大肠杆菌中表达,亲和纯化,并用于通过表面等离振子共振分析CaM结合的动力学。所有分析的突变都会在一定程度上影响与CaM相互作用的动力学:在大多数情况下,动力学变化会导致亲和力发生边际变化,但突变体S57D(KD约比野生型ACA8高出10倍)和S99D (KD约为野生型ACA8的一半)。在体外,ACA8 N末端被拟南芥钙依赖性蛋白激酶的两种同工型(CPK1和CPK16)磷酸化。突变6His-1M-I116肽的磷酸化表明CPK16能够在Ser19和Ser22处磷酸化ACA8 N末端。讨论了通过其N末端的磷酸化对ACA8活性进行微调的可能的生理学意义。

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