Complete maturation of the plastid protein translocation channel requires a type I signal peptidase

被引:81
作者
Inoue, K [1 ]
Baldwin, AJ
Shipman, RL
Matsui, K
Theg, SM
Ohme-Takagi, M
机构
[1] Univ Calif Davis, Coll Agr & Environm Sci, Dept Plant Sci, Davis, CA 95616 USA
[2] Univ Calif Davis, Coll Biol Sci, Plant Biol Sect, Davis, CA 95616 USA
[3] Natl Inst Adv Ind Sci & Technol, Gene Funct Res Lab, Tsukuba, Ibaraki 3058566, Japan
关键词
D O I
10.1083/jcb.200506171
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
he protein translocation channel at the plastid outer envelope membrane, Toc75, is essential for the viability of plants from the embryonic stage. It is encoded in the nucleus and is synthesized with a bipartite transit peptide that is cleaved during maturation. Despite its important function, the molecular mechanism and the biological significance of the full maturation of Toc75 remain unclear. In this study, we show that a type I signal peptidase ( SPase I) is responsible for this process. First, we demonstrate that a bacterial SPase I converted Toc75 precursor to its mature form in vitro. Next, we show that disruption of a gene encoding plastidic SPase I ( Plsp1) resulted in the accumulation of immature forms of Toc75, severe reduction of plastid internal membrane development, and a seedling lethal phenotype. These phenotypes were rescued by the overexpression of Plsp1 complementary DNA. Plsp1 appeared to be targeted both to the envelope and to the thylakoidal membranes; thus, it may have multiple functions.
引用
收藏
页码:425 / 430
页数:6
相关论文
共 30 条
[21]   Signal peptidases [J].
Paetzel, M ;
Karla, A ;
Strynadka, NCJ ;
Dalbey, RE .
CHEMICAL REVIEWS, 2002, 102 (12) :4549-4579
[22]   Identification of the carotenoid isomerase provides insight into carotenoid biosynthesis, prolamellar body formation, and photomorphogenesis [J].
Park, H ;
Kreunen, SS ;
Cuttriss, AJ ;
DellaPenna, D ;
Pogson, BJ .
PLANT CELL, 2002, 14 (02) :321-332
[23]   New functions of the thylakoid membrane proteome of Arabidopsis thaliana revealed by a simple, fast, and versatile fractionation strategy [J].
Peltier, JB ;
Ytterberg, AJ ;
Sun, Q ;
van Wijk, KJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (47) :49367-49383
[24]   LIPID-COMPOSITION OF PROLAMELLAR BODIES AND PROTHYLAKOIDS OF WHEAT ETIOPLASTS [J].
RYBERG, M ;
SANDELIUS, AS ;
SELSTAM, E .
PHYSIOLOGIA PLANTARUM, 1983, 57 (04) :555-560
[25]   DEVELOPMENT OF THE 33-KDA, 23-KDA AND 16-KDA POLYPEPTIDES OF THE PHOTOSYNTHETIC OXYGEN-EVOLVING SYSTEM DURING GREENING [J].
RYRIE, IJ ;
YOUNG, S ;
ANDERSSON, B .
FEBS LETTERS, 1984, 177 (02) :269-273
[26]   Without a little help from 'my' friends:: direct insertion of proteins into chloroplast membranes? [J].
Schleiff, E ;
Klösgen, RB .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2001, 1541 (1-2) :22-33
[27]   A novel, bipartite transit peptide targets OEP75 to the outer membrane of the chloroplastic envelope [J].
Tranel, PJ ;
Keegstra, K .
PLANT CELL, 1996, 8 (11) :2093-2104
[28]   A COMPONENT OF THE CHLOROPLASTIC PROTEIN IMPORT APPARATUS IS TARGETED TO THE OUTER ENVELOPE MEMBRANE VIA A NOVEL PATHWAY [J].
TRANEL, PJ ;
FROEHLICH, J ;
GOYAL, A ;
KEEGSTRA, K .
EMBO JOURNAL, 1995, 14 (11) :2436-2446
[29]   A NEW METHOD FOR PREDICTING SIGNAL SEQUENCE CLEAVAGE SITES [J].
VONHEIJNE, G .
NUCLEIC ACIDS RESEARCH, 1986, 14 (11) :4683-4690
[30]   SECA HOMOLOG IN PROTEIN-TRANSPORT WITHIN CHLOROPLASTS - EVIDENCE FOR ENDOSYMBIONT-DERIVED SORTING [J].
YUAN, JG ;
HENRY, R ;
MCCAFFERY, M ;
CLINE, K .
SCIENCE, 1994, 266 (5186) :796-798