Mori H, Summer E J, Ma X, Cline K
Horticultural Sciences and Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, Florida 32611, USA.
J Cell Biol. 1999 Jul 12;146(1):45-56. doi: 10.1083/jcb.146.1.45.
Prokaryotes and prokaryote-derived thylakoid membranes of chloroplasts share multiple, evolutionarily conserved pathways for protein export. These include the Sec, signal recognition particle (SRP), and Delta pH/Tat systems. Little is known regarding the thylakoid membrane components involved in these pathways. We isolated a cDNA clone to a novel component of the Delta pH pathway, Tha4, and prepared antibodies against pea Tha4, against maize Hcf106, a protein implicated in Delta pH pathway transport by genetic studies, and against cpSecY, the thylakoid homologue of the bacterial SecY translocon protein. These components were localized to the nonappressed thylakoid membranes. Tha4 and Hcf106 were present in approximately 10-fold excess over active translocation sites. Antibodies to either Tha4 or Hcf106 inhibited translocation of four known Delta pH pathway substrate proteins, but not of Sec pathway or SRP pathway substrates. This suggests that Tha4 and Hcf106 operate either in series or as subunits of a heteromultimeric complex. cpSecY antibodies inhibited translocation of Sec pathway substrates but not of Delta pH or SRP pathway substrates. These studies provide the first biochemical evidence that Tha4 and Hcf106 are specific components of the Delta pH pathway and provide one line of evidence that cpSecY is used specifically by the Sec pathway.
原核生物以及叶绿体中源自原核生物的类囊体膜具有多种在进化上保守的蛋白质输出途径。这些途径包括Sec途径、信号识别颗粒(SRP)途径以及ΔpH/Tat系统。对于参与这些途径的类囊体膜成分,人们了解甚少。我们分离出了一个编码ΔpH途径新成分Tha4的cDNA克隆,并制备了针对豌豆Tha4、针对玉米Hcf106(通过遗传学研究表明其与ΔpH途径转运有关的一种蛋白质)以及针对cpSecY(细菌SecY转运体蛋白的类囊体同源物)的抗体。这些成分定位于非堆叠类囊体膜。Tha4和Hcf106的含量比活性转运位点大约多出10倍。针对Tha4或Hcf106的抗体抑制了四种已知的ΔpH途径底物蛋白的转运,但不抑制Sec途径或SRP途径底物的转运。这表明Tha4和Hcf106要么串联起作用,要么作为异源多聚体复合物的亚基发挥作用。cpSecY抗体抑制了Sec途径底物的转运,但不抑制ΔpH或SRP途径底物的转运。这些研究提供了首个生化证据,证明Tha4和Hcf106是ΔpH途径的特定成分,并提供了一条证据表明cpSecY专门被Sec途径所利用。