Plant HEM1 specifies a condensation domain to control immune gene translation

被引:0
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作者
Yulu Zhou
Ruixia Niu
Zhijuan Tang
Rui Mou
Zhao Wang
Sitao Zhu
Hongchun Yang
Pingtao Ding
Guoyong Xu
机构
[1] Wuhan University,State Key Laboratory of Hybrid Rice, Institute for Advanced Studies (IAS)
[2] Wuhan University,School of Life Sciences
[3] Hubei Hongshan Laboratory,Institute of Biology Leiden
[4] Leiden University,undefined
来源
Nature Plants | 2023年 / 9卷
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摘要
Translational reprogramming is a fundamental layer of immune regulation, but how such a global regulatory mechanism operates remains largely unknown. Here we perform a genetic screen and identify Arabidopsis HEM1 as a global translational regulator of plant immunity. The loss of HEM1 causes exaggerated cell death to restrict bacterial growth during effector-triggered immunity (ETI). By improving ribosome footprinting, we reveal that the hem1 mutant increases the translation efficiency of pro-death immune genes. We show that HEM1 contains a plant-specific low-complexity domain (LCD) absent from animal homologues. This LCD endows HEM1 with the capability of phase separation in vitro and in vivo. During ETI, HEM1 interacts and condensates with the translation machinery; this activity is promoted by the LCD. CRISPR removal of this LCD causes more ETI cell death. Our results suggest that HEM1 condensation constitutes a brake mechanism of immune activation by controlling the tissue health and disease resistance trade-off during ETI.
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页码:289 / 301
页数:12
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