Oreb Mislav, Zoryan Mikael, Vojta Aleksandar, Maier Uwe G, Eichacker Lutz A, Schleiff Enrico
LMU München, Department of Biology I, Menzinger Strasse 67, 80638 München, Germany.
FEBS Lett. 2007 Dec 22;581(30):5945-51. doi: 10.1016/j.febslet.2007.11.071. Epub 2007 Dec 3.
The precursor protein receptor at the chloroplast outer membrane atToc33 is a GTPase, which can be inactivated by phosphorylation in vitro, being arrested in the GDP loaded state. To assess the physiological function of phosphorylation, attoc33 knock out mutants were complemented with a mutated construct mimicking the constitutively phosphorylated state. Our data suggest that the reduced functionality of the mutant protein can be compensated by its upregulation. Chloroplast biogenesis and photosynthetic activity are impaired in the mutants during the early developmental stage, which is consistent with the requirement of atToc33 in young photosynthetic tissues.
叶绿体外膜上的前体蛋白受体atToc33是一种GTP酶,在体外可通过磷酸化使其失活,从而使其停滞在结合GDP的状态。为了评估磷酸化的生理功能,用模拟组成型磷酸化状态的突变构建体对atToc33敲除突变体进行了互补。我们的数据表明,突变蛋白功能的降低可以通过其上调来补偿。在早期发育阶段,突变体中的叶绿体生物发生和光合活性受到损害,这与年轻光合组织中atToc33的需求一致。