Leheny EA, Teter SA, Theg SM
Division of Biological Sciences, Section of Plant Biology, One Shields Avenue, University of California, Davis, California 95616
Plant Physiol. 1998 Feb 1;116(2):805-14. doi: 10.1104/pp.116.2.805.
We have examined the transport of the precursor of the 17-kD subunit of the photosynthetic O2-evolving complex (OE17) in intact chloroplasts in the presence of inhibitors that block two protein-translocation pathways in the thylakoid membrane. This precursor uses the transmembrane pH gradient-dependent pathway into the thylakoid lumen, and its transport across the thylakoid membrane is thought to be independent of ATP and the chloroplast SecA homolog, cpSecA. We unexpectedly found that azide, widely considered to be an inhibitor of cpSecA, had a profound effect on the targeting of the photosynthetic OE17 to the thylakoid lumen. By itself, azide caused a significant fraction of mature OE17 to accumulate in the stroma of intact chloroplasts. When added in conjunction with the protonophore nigericin, azide caused the maturation of a fraction of the stromal intermediate form of OE17, and this mature protein was found only in the stroma. Our data suggest that OE17 may use the sec-dependent pathway, especially when the transmembrane pH gradient-dependent pathway is inhibited. Under certain conditions, OE17 may be inserted across the thylakoid membrane far enough to allow removal of the transit peptide, but then may slip back out of the translocation machinery into the stromal compartment.
我们在存在阻断类囊体膜中两条蛋白质转运途径的抑制剂的情况下,研究了光合放氧复合体(OE17)17-kD亚基前体在完整叶绿体中的转运。该前体利用依赖跨膜pH梯度的途径进入类囊体腔,并且其跨类囊体膜的转运被认为独立于ATP和叶绿体SecA同源物cpSecA。我们意外地发现,被广泛认为是cpSecA抑制剂的叠氮化物,对光合OE17靶向类囊体腔有深远影响。单独使用时,叠氮化物会导致相当一部分成熟的OE17在完整叶绿体的基质中积累。当与质子载体尼日利亚菌素一起添加时,叠氮化物会使一部分基质中间形式的OE17成熟,并且这种成熟蛋白仅在基质中被发现。我们的数据表明,OE17可能利用sec依赖途径,尤其是当依赖跨膜pH梯度的途径受到抑制时。在某些条件下,OE17可能插入类囊体膜足够远以允许去除转运肽,但随后可能从转运机制中滑回基质区室。