том 553 издание 7688 страницы 342-346

An extracellular network of Arabidopsis leucine-rich repeat receptor kinases

Elwira Smakowska Luzan 1
G Adam Mott 2
Katarzyna Parys 1
Martin Stegmann 3
Timothy C Howton 4
Mehdi Layeghifard 2
Jana Neuhold 5
Anita Lehner 5
Jixiang Kong 1
Karin Grünwald 1
Natascha Weinberger 1
Santosh B Satbhai 1, 6
Dominik Mayer 1, 7, 8
Wolfgang Busch 1, 6
Mathias Madalinski 1, 7, 8
Peggy Stolt Bergner 5
Nicholas J Provart 2, 9
M Shahid Mukhtar 4
Cyril Zipfel 3
Darrell DESVEAUX 2, 9
David S. Guttman 2, 9
Youssef Belkhadir 1
Тип публикацииJournal Article
Дата публикации2018-01-10
scimago Q1
wos Q1
БС1
SJR18.288
CiteScore78.1
Impact factor48.5
ISSN00280836, 14764687
Multidisciplinary
Краткое описание
A high-throughput assay is used to analyse 40,000 potential extracellular domain interactions of a large family of plant cell surface receptors (LRR-RKs) and provide a cell surface interaction network for these receptors. Cell surface receptors mediate communication between the interior of a cell and its external environment. Specifically, the extracellular domains (ECDs) of such receptors interact with external molecules. It is less clear how interactions between ECDs of different receptors help to form receptor complexes for signal transduction. Youssef Belkhadir and colleagues investigate systems-level organization of leucine-rich repeat receptor kinases (LRR-RKs)—a large family of plant cell surface receptors with roles in processes including plant defence and development. The authors use a high-throughput assay to study 40,000 potential ECD interactions. They develop a cell surface interaction network for these receptors and study its dynamics. The team demonstrate the power of this network for detecting biologically relevant interactions by predicting and validating the function of previously uncharacterized LRR-RKs in plant growth and immunity. The cells of multicellular organisms receive extracellular signals using surface receptors. The extracellular domains (ECDs) of cell surface receptors function as interaction platforms, and as regulatory modules of receptor activation1,2. Understanding how interactions between ECDs produce signal-competent receptor complexes is challenging because of their low biochemical tractability3,4. In plants, the discovery of ECD interactions is complicated by the massive expansion of receptor families, which creates tremendous potential for changeover in receptor interactions5. The largest of these families in Arabidopsis thaliana consists of 225 evolutionarily related leucine-rich repeat receptor kinases (LRR-RKs)5, which function in the sensing of microorganisms, cell expansion, stomata development and stem-cell maintenance6,7,8,9. Although the principles that govern LRR-RK signalling activation are emerging1,10, the systems-level organization of this family of proteins is unknown. Here, to address this, we investigated 40,000 potential ECD interactions using a sensitized high-throughput interaction assay3, and produced an LRR-based cell surface interaction network (CSILRR) that consists of 567 interactions. To demonstrate the power of CSILRR for detecting biologically relevant interactions, we predicted and validated the functions of uncharacterized LRR-RKs in plant growth and immunity. In addition, we show that CSILRR operates as a unified regulatory network in which the LRR-RKs most crucial for its overall structure are required to prevent the aberrant signalling of receptors that are several network-steps away. Thus, plants have evolved LRR-RK networks to process extracellular signals into carefully balanced responses.
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Smakowska Luzan E. et al. An extracellular network of Arabidopsis leucine-rich repeat receptor kinases // Nature. 2018. Vol. 553. No. 7688. pp. 342-346.
ГОСТ со всеми авторами (до 50) Скопировать
Smakowska Luzan E., Mott G. A., Parys K., Stegmann M., Howton T. C., Layeghifard M., Neuhold J., Lehner A., Kong J., Grünwald K., Weinberger N., Satbhai S. B., Mayer D., Busch W., Madalinski M., Stolt Bergner P., Provart N. J., Mukhtar M. S., Zipfel C., DESVEAUX D., Guttman D. S., Belkhadir Y. An extracellular network of Arabidopsis leucine-rich repeat receptor kinases // Nature. 2018. Vol. 553. No. 7688. pp. 342-346.
RIS |
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TY - JOUR
DO - 10.1038/nature25184
UR - https://doi.org/10.1038/nature25184
TI - An extracellular network of Arabidopsis leucine-rich repeat receptor kinases
T2 - Nature
AU - Smakowska Luzan, Elwira
AU - Mott, G Adam
AU - Parys, Katarzyna
AU - Stegmann, Martin
AU - Howton, Timothy C
AU - Layeghifard, Mehdi
AU - Neuhold, Jana
AU - Lehner, Anita
AU - Kong, Jixiang
AU - Grünwald, Karin
AU - Weinberger, Natascha
AU - Satbhai, Santosh B
AU - Mayer, Dominik
AU - Busch, Wolfgang
AU - Madalinski, Mathias
AU - Stolt Bergner, Peggy
AU - Provart, Nicholas J
AU - Mukhtar, M Shahid
AU - Zipfel, Cyril
AU - DESVEAUX, Darrell
AU - Guttman, David S.
AU - Belkhadir, Youssef
PY - 2018
DA - 2018/01/10
PB - Springer Nature
SP - 342-346
IS - 7688
VL - 553
PMID - 29320478
SN - 0028-0836
SN - 1476-4687
ER -
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@article{2018_Smakowska Luzan,
author = {Elwira Smakowska Luzan and G Adam Mott and Katarzyna Parys and Martin Stegmann and Timothy C Howton and Mehdi Layeghifard and Jana Neuhold and Anita Lehner and Jixiang Kong and Karin Grünwald and Natascha Weinberger and Santosh B Satbhai and Dominik Mayer and Wolfgang Busch and Mathias Madalinski and Peggy Stolt Bergner and Nicholas J Provart and M Shahid Mukhtar and Cyril Zipfel and Darrell DESVEAUX and David S. Guttman and Youssef Belkhadir},
title = {An extracellular network of Arabidopsis leucine-rich repeat receptor kinases},
journal = {Nature},
year = {2018},
volume = {553},
publisher = {Springer Nature},
month = {jan},
url = {https://doi.org/10.1038/nature25184},
number = {7688},
pages = {342--346},
doi = {10.1038/nature25184}
}
MLA
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Smakowska Luzan, Elwira, et al. “An extracellular network of Arabidopsis leucine-rich repeat receptor kinases.” Nature, vol. 553, no. 7688, Jan. 2018, pp. 342-346. https://doi.org/10.1038/nature25184.