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HMA6 and HMA8 are two chloroplast Cu+-ATPases with different enzymatic properties

机译:HMA6和HMA8是两种具有不同酶学性质的叶绿体Cu + -ATPase

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摘要

Copper (Cu) plays a key role in the photosynthetic process as cofactor of the plastocyanin (PC), an essential component of the chloroplast photosynthetic electron transfer chain. Encoded by the nuclear genome, PC is translocated in its apo-form into the chloroplast and the lumen of thylakoids where it is processed to its mature form and acquires Cu. In Arabidopsis, Cu delivery into the thylakoids involves two transporters of the PIB-1 ATPases family, heavy metal associated protein 6 (HMA6) located at the chloroplast envelope and HMA8 at the thylakoid membrane. To gain further insight into the way Cu is delivered to PC, we analysed the enzymatic properties of HMA8 and compared them with HMA6 ones using in?vitro phosphorylation assays and phenotypic tests in yeast. These experiments reveal that HMA6 and HMA8 display different enzymatic properties: HMA8 has a higher apparent affinity for Cu+ but a slower dephosphorylation kinetics than HMA6. Modelling experiments suggest that these differences could be explained by the electrostatic properties of the Cu+ releasing cavities of the two transporters and/or by the different nature of their cognate Cu+ acceptors (metallochaperone/PC).
机译:铜(Cu)作为质体蓝蛋白(PC)的辅助因子,在光合作用中起着关键作用,质体蓝素(PC)是叶绿体光合电子传递链的重要组成部分。 PC被核基因组编码,以其脱辅基形式易位到叶绿体和类囊体腔中,然后被加工成其成熟形式并获得Cu。在拟南芥中,铜向类囊体中的转运涉及PIB-1 ATPases家族的两个转运蛋白,位于叶绿体包膜的重金属相关蛋白6(HMA6)和类囊体膜的HMA8。为了进一步了解Cu传递到PC的方式,我们分析了HMA8的酶学性质,并使用酵母中的体外磷酸化测定和表型测试将其与HMA6的酶性质进行了比较。这些实验表明,HMA6和HMA8显示出不同的酶促性质:HMA8对Cu +具有更高的表观亲和力,但与HMA6相比具有更慢的去磷酸化动力学。建模实验表明,这些差异可以通过两个转运蛋白释放Cu +的腔体的静电特性和/或它们的同源Cu +受体(金属陪伴酮/ PC)的不同性质来解释。

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