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工程化 CaM2 调节核内钙离子振荡并增强豆科植物根瘤共生。

Engineered CaM2 modulates nuclear calcium oscillation and enhances legume root nodule symbiosis.

机构信息

Cell and Developmental Biology Department, John Innes Centre, Norwich NR4 7UH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2022 Mar 29;119(13):e2200099119. doi: 10.1073/pnas.2200099119. Epub 2022 Mar 24.

Abstract

SignificanceOscillations in intracellular calcium concentration play an essential role in the regulation of multiple cellular processes. In plants capable of root endosymbiosis with nitrogen-fixing bacteria and/or arbuscular mycorrhizal fungi, nuclear localized calcium oscillations are essential to transduce the microbial signal. Although the ion channels required to generate the nuclear localized calcium oscillations have been identified, their mechanisms of regulation are unknown. Here, we combined proteomics and engineering approaches to demonstrate that the calcium-bound form of the calmodulin 2 (CaM2) associates with CYCLIC NUCLEOTIDE GATED CHANNEL 15 (CNGC15s), closing the channels and providing the negative feedback to sustain the oscillatory mechanism. We further unraveled that the engineered CaM2 accelerates early endosymbioses and enhanced root nodule symbiosis but not arbuscular mycorrhization.

摘要

意义细胞内钙离子浓度的波动在调节多种细胞过程中起着至关重要的作用。在能够与固氮细菌和/或丛枝菌根真菌进行根内共生的植物中,核定位钙离子波动对于转导微生物信号是必需的。尽管已经鉴定出产生核定位钙离子波动所需的离子通道,但它们的调节机制尚不清楚。在这里,我们结合蛋白质组学和工程学方法证明,钙调蛋白 2(CaM2)的钙结合形式与环核苷酸门控通道 15(CNGC15s)结合,关闭通道并提供负反馈以维持振荡机制。我们进一步揭示,工程化的 CaM2 加速早期共生体的形成,并增强根瘤共生,但不增强丛枝菌根共生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0403/9060481/93eb9f2fc655/pnas.2200099119fig01.jpg

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