Two homologous GTP-binding proteins, atToc33 and atToc159, control access of cytosolic precursor proteins to the chloroplast. atToc33 is a constitutive outer chloroplast membrane protein, whereas the precursor receptor atToc159 also exists in a soluble, cytosolic form. This suggests that atToc159 may be able to switch between a soluble and an integral membrane form. By transient expression of GFP fusion proteins, mutant analysis, and biochemical experimentation, we demonstrate that the GTP-binding domain regulates the targeting of cytosolic atToc159 to the chloroplast and mediates the switch between cytosolic and integral membrane forms. Mutant atToc159, unable to bind GTP, does not reinstate a green phenotype in an albino mutant (ppi2) lacking endogenous atToc159, remaining trapped in the cytosol. Thus, the function of atToc159 in chloroplast biogenesis is dependent on an intrinsic GTP-regulated switch that controls localization of the receptor to the chloroplast envelope.
Essential role of the G-domain in targeting of the protein import receptor atToc159 to the chloroplast outer membrane
Present address of A. Hiltbrunner, P. Weibel, P.-A. Vidi, M. Alvarez-Huerta, and F. Kessler is Institut de Botanique, Laboratoire de Physiologie Végétale, Université de Neuchâtel, Rue Emile-Argand 11, CH-2007 Neuchâtel, Switzerland.
Abbreviations used in this paper: A-domain, acidic domain; CaMV, cauliflower mosaic virus; G-domain, GTP-binding domain; M-domain, membrane domain; Ni-NTA, Ni-nitrilotriacetic acid; Toc, translocon at the outer chloroplast membrane.
Jörg Bauer, Andreas Hiltbrunner, Petra Weibel, Pierre-Alexandre Vidi, Mayte Alvarez-Huerta, Matthew D. Smith, Danny J. Schnell, Felix Kessler; Essential role of the G-domain in targeting of the protein import receptor atToc159 to the chloroplast outer membrane . J Cell Biol 9 December 2002; 159 (5): 845–854. doi: https://doi.org/10.1083/jcb.200208018
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