Tapken Wiebke, Kim Jitae, Nishimura Kenji, van Wijk Klaas J, Pilon Marinus
Biology Department, Colorado State University, Fort Collins, CO, 80523, USA.
New Phytol. 2015 Jan;205(2):511-7. doi: 10.1111/nph.13093. Epub 2014 Sep 29.
The distribution of essential metal ions over subcellular compartments for use as cofactors requires control of membrane transporters. PAA2/HMA8 is a copper-transporting P1B -type ATPase in the thylakoid membrane, required for the maturation of plastocyanin. When copper is highly available to the plant this transporter is degraded, which implies the action of a protease. In order to identify the proteolytic machinery responsible for PAA2/HMA8 turnover in Arabidopsis, mutant lines defective in five different chloroplast protease systems were analyzed. Plants defective in the chloroplast caseinolytic protease (Clp) system were specifically impaired in PAA2/HMA8 protein turnover on media containing elevated copper concentrations. However, the abundance of a core Clp component was not directly affected by copper. Furthermore, the expression and activity of both cytosolic and chloroplast-localized superoxide dismutases (SODs), which are known to be dependent on copper, were not altered in the clp mutants, indicating that the loss of PAA2/HMA8 turnover in these lines was not caused by a lack of stromal copper. The results suggest that copper excess in the stroma triggers selection of the thylakoid-localized PAA2 transporter for degradation by the Clp protease, but not several other chloroplast proteases, and support a novel role for this proteolytic system in cellular copper homeostasis.
必需金属离子在亚细胞区室中作为辅因子的分布需要膜转运蛋白的调控。PAA2/HMA8是类囊体膜上一种运输铜的P1B型ATP酶,是质体蓝素成熟所必需的。当植物有大量铜供应时,这种转运蛋白会被降解,这意味着有蛋白酶的作用。为了鉴定负责拟南芥中PAA2/HMA8周转的蛋白水解机制,分析了五个不同叶绿体蛋白酶系统有缺陷的突变株系。在含有高浓度铜的培养基上,叶绿体酪蛋白水解蛋白酶(Clp)系统有缺陷的植物在PAA2/HMA8蛋白周转方面受到特异性损害。然而,核心Clp组分的丰度不受铜的直接影响。此外,已知依赖铜的胞质和叶绿体定位的超氧化物歧化酶(SOD)的表达和活性在clp突变体中没有改变,这表明这些株系中PAA2/HMA8周转的丧失不是由基质铜缺乏引起的。结果表明,基质中过量的铜触发了类囊体定位的PAA2转运蛋白被Clp蛋白酶降解的选择,而不是其他几种叶绿体蛋白酶,并支持了这种蛋白水解系统在细胞铜稳态中的新作用。