TY - JOUR
T1 - Polar localization of the NIP5;1 boric acid channel is maintained by endocytosis and facilitates boron transport in arabidopsis roots
AU - Wang, Sheliang
AU - Yoshinari, Akira
AU - Shimada, Tomoo
AU - Hara-Nishimura, Ikuko
AU - Mitani-Ueno, Namiki
AU - Ma, Jian Feng
AU - Naito, Satoshi
AU - Takano, Junpei
N1 - Funding Information:
We thank Kayo Konishi and Tomoko Shimizu for technical assistance; Toshihiro Watanabe, Toshiaki Ito (Hokkaido University), Naoki Yamaji (Okayama University), and Koji Kasai (The University of Tokyo) for valuable comments and technical guidance; and Niko Geldner (University of Lausanne), Toru Fujiwara, and Mayuki Tanaka (The University of Tokyo) for valuable comments and materials. We also thank Gabriel Schaaf (T?bingen University) for critical reading of the manuscript; and Shigeki Takada, Yuko Imai, Hiroaki Koyama (Hokkaido University), Tsuyoshi Nakagawa (Shimane University), Inhwan Hwang (Pohang University of Science and Technology), and the ABRC for materials. This work was supported by the NEXT program (GS001) and the Grant-in-Aid for Young Scientists (A) (26712007) from the Japan Society for the Promotion of Science, the Young Investigators Grant from the Human Frontier Science Program (RGY0090/2011), and a research grant from the Naito Foundation to J.T.
Publisher Copyright:
© 2017 ASPB.
PY - 2017/4
Y1 - 2017/4
N2 - Boron uptake in Arabidopsis thaliana is mediated by nodulin 26-like intrinsic protein 5;1 (NIP5;1), a boric acid channel that is located preferentially on the soil side of the plasma membrane in root cells. However, the mechanism underlying this polar localization is poorly understood. Here, we show that the polar localization of NIP5;1 in epidermal and endodermal root cells is mediated by the phosphorylation of Thr residues in the conserved TPG (ThrProGly) repeat in the N-terminal region of NIP5;1. Although substitutions of Ala for three Thr residues in the TPG repeat did not affect lateral diffusion in the plasma membrane, these substitutions inhibited endocytosis and strongly compromised the polar localization of GFP-NIP5;1. Consistent with this, the polar localization was compromised in m subunit mutants of the clathrin adaptor AP2. The Thr-to-Ala substitutions did not affect the boron transport activity of GFP-NIP5;1 in Xenopus laevis oocytes but did inhibit the ability to complement boron translocation to shoots and rescue growth defects in nip5;1-1 mutant plants under boron-limited conditions. These results demonstrate that the polar localization of NIP5;1 is maintained by clathrin-mediated endocytosis, is dependent on phosphorylation in the TPG repeat, and is necessary for the efficient transport of boron in roots.
AB - Boron uptake in Arabidopsis thaliana is mediated by nodulin 26-like intrinsic protein 5;1 (NIP5;1), a boric acid channel that is located preferentially on the soil side of the plasma membrane in root cells. However, the mechanism underlying this polar localization is poorly understood. Here, we show that the polar localization of NIP5;1 in epidermal and endodermal root cells is mediated by the phosphorylation of Thr residues in the conserved TPG (ThrProGly) repeat in the N-terminal region of NIP5;1. Although substitutions of Ala for three Thr residues in the TPG repeat did not affect lateral diffusion in the plasma membrane, these substitutions inhibited endocytosis and strongly compromised the polar localization of GFP-NIP5;1. Consistent with this, the polar localization was compromised in m subunit mutants of the clathrin adaptor AP2. The Thr-to-Ala substitutions did not affect the boron transport activity of GFP-NIP5;1 in Xenopus laevis oocytes but did inhibit the ability to complement boron translocation to shoots and rescue growth defects in nip5;1-1 mutant plants under boron-limited conditions. These results demonstrate that the polar localization of NIP5;1 is maintained by clathrin-mediated endocytosis, is dependent on phosphorylation in the TPG repeat, and is necessary for the efficient transport of boron in roots.
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U2 - 10.1105/tpc.16.00825
DO - 10.1105/tpc.16.00825
M3 - Article
C2 - 28341806
AN - SCOPUS:85019042162
SN - 1040-4651
VL - 29
SP - 824
EP - 842
JO - Plant Cell
JF - Plant Cell
IS - 4
ER -