Nada Ahmed, Soll Jürgen
Department of Biology I, Botany, University of Munich, Menzinger Str. 67, Munich 80638, Germany.
J Cell Sci. 2004 Aug 1;117(Pt 17):3975-82. doi: 10.1242/jcs.01265.
The 32 kDa chloroplast inner envelope protein (IEP32) is imported into the organelle in the absence of a cleavable N-terminal pre-sequence. The ten N-terminal amino acids form an essential portion of this targeting information as deduced from deletion mutants. Recognition and translocation of IEP32 is not catalysed by the general chloroplast outer envelope translocon subunits Toc159, Toc75III and Toc34, because IEP32 import is neither inhibited by proteolytic removal of Toc34 and Toc159 nor by inhibition of the Toc75 import channel by CuCl(2) or spermine. Import of IEP32 only requires ATP concentrations of below 20 microM indicating that stromal chaperones are not involved in the process, but that IEP32 might be directly inserted from the intermembrane space into the inner envelope by a so far unidentified pathway. IEP32 may require the assistance of Tic22, an intermembrane space translocon subunit for import as indicated by the presence of a chemical crosslinked product between both polypeptides.
32 kDa叶绿体内膜蛋白(IEP32)在没有可裂解的N端前序列的情况下被导入该细胞器。从缺失突变体推断,N端的十个氨基酸构成了这种靶向信息的重要部分。IEP32的识别和转运不是由叶绿体外膜通用转运体亚基Toc159、Toc75III和Toc34催化的,因为IEP32的导入既不会被Toc34和Toc159的蛋白水解去除所抑制,也不会被CuCl₂或精胺对Toc75导入通道的抑制所抑制。IEP32的导入仅需要低于20微摩尔的ATP浓度,这表明基质伴侣蛋白不参与该过程,而是IEP32可能通过一种迄今未知的途径从膜间隙直接插入内膜。如两种多肽之间存在化学交联产物所示,IEP32的导入可能需要Tic22(一种膜间隙转运体亚基)的协助。