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Plant function and evolutionary biology

Articles citing this paper

The Tic40 translocon components exhibit preferential interactions with different forms of the Oee1 plastid protein precursor

Kenton Ko, Susitna Banerjee, Jennette Innes, Darcie Taylor and Zdenka Ko
31(3) pp.285 - 294


7 articles found in Crossref database.

Recognition and envelope translocation of chloroplast preproteins
Bédard Jocelyn, Jarvis Paul
Journal of Experimental Botany. 2005 56(419). p.2287
Functional Similarity between the Chloroplast Translocon Component, Tic40, and the Human Co-chaperone, Hsp70-interacting Protein (Hip)
Bédard Jocelyn, Kubis Sybille, Bimanadham Sarat, Jarvis Paul
Journal of Biological Chemistry. 2007 282(29). p.21404
Evidence That the Plastid Translocon Tic40 Components Possess Modulating Capabilities
Ko Kenton, Taylor Darcie, Argenton Paulo, Innes Jennette, Pedram Babak, Seibert Fabian, Granell Antonio, Ko Zdenka
Journal of Biological Chemistry. 2005 280(1). p.215
The STI1‐domain is a flexible alpha‐helical fold with a hydrophobic groove
Fry Michelle Y., Saladi Shyam M., Clemons William M.
Protein Science. 2021 30(4). p.882
Uncovering a Link between a Plastid Translocon Component and Rhomboid Proteases Using Yeast Mitochondria-Based Assays
Karakasis Katherine, Taylor Darcie, Ko Kenton
Plant and Cell Physiology. 2007 48(4). p.655
Plastid protein delivery: coping with diversityThis review is one of a selection of papers published in the Special Issue on Plant Cell Biology.
Ko Kenton, Chan Kelvin, Karakasis Katherine, Pedram Babak
Canadian Journal of Botany. 2006 84(4). p.543
In vivo studies on the roles of Tic110, Tic40 and Hsp93 during chloroplast protein import
Kovacheva Sabina, Bédard Jocelyn, Patel Ramesh, Dudley Penny, Twell David, Ríos Gabino, Koncz Csaba, Jarvis Paul
The Plant Journal. 2005 41(3). p.412

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