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水稻黑条矮缩病毒P7-2通过与水稻类SKP1蛋白结合形成SCF复合物,并与参与赤霉素途径的GID2相互作用。

Rice black streaked dwarf virus P7-2 forms a SCF complex through binding to Oryza sativa SKP1-like proteins, and interacts with GID2 involved in the gibberellin pathway.

作者信息

Tao Tao, Zhou Cui-Ji, Wang Qian, Chen Xiang-Ru, Sun Qian, Zhao Tian-Yu, Ye Jian-Chun, Wang Ying, Zhang Zong-Ying, Zhang Yong-Liang, Guo Ze-Jian, Wang Xian-Bing, Li Da-Wei, Yu Jia-Lin, Han Cheng-Gui

机构信息

State Key Laboratory for Agro-biotechnology and Ministry of Agriculture Key Laboratory for Plant Pathology, China Agricultural University, Beijing, People's Republic of China.

Key Laboratory for Tobacco Gene Resources, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, Shandong Province, People's Republic of China.

出版信息

PLoS One. 2017 May 11;12(5):e0177518. doi: 10.1371/journal.pone.0177518. eCollection 2017.

Abstract

As a core subunit of the SCF complex that promotes protein degradation through the 26S proteasome, S-phase kinase-associated protein 1 (SKP1) plays important roles in multiple cellular processes in eukaryotes, including gibberellin (GA), jasmonate, ethylene, auxin and light responses. P7-2 encoded by Rice black streaked dwarf virus (RBSDV), a devastating viral pathogen that causes severe symptoms in infected plants, interacts with SKP1 from different plants. However, whether RBSDV P7-2 forms a SCF complex and targets host proteins is poorly understood. In this study, we conducted yeast two-hybrid assays to further explore the interactions between P7-2 and 25 type I Oryza sativa SKP1-like (OSK) proteins, and found that P7-2 interacted with eight OSK members with different binding affinity. Co-immunoprecipitation assay further confirmed the interaction of P7-2 with OSK1, OSK5 and OSK20. It was also shown that P7-2, together with OSK1 and O. sativa Cullin-1, was able to form the SCF complex. Moreover, yeast two-hybrid assays revealed that P7-2 interacted with gibberellin insensitive dwarf2 (GID2) from rice and maize plants, which is essential for regulating the GA signaling pathway. It was further demonstrated that the N-terminal region of P7-2 was necessary for the interaction with GID2. Overall, these results indicated that P7-2 functioned as a component of the SCF complex in rice, and interaction of P7-2 with GID2 implied possible roles of the GA signaling pathway during RBSDV infection.

摘要

作为SCF复合物的核心亚基,通过26S蛋白酶体促进蛋白质降解,S期激酶相关蛋白1(SKP1)在真核生物的多种细胞过程中发挥重要作用,包括赤霉素(GA)、茉莉酸、乙烯、生长素和光反应。由水稻黑条矮缩病毒(RBSDV)编码的P7-2是一种毁灭性病毒病原体,在受感染植物中引起严重症状,它与来自不同植物的SKP1相互作用。然而,RBSDV P7-2是否形成SCF复合物并靶向宿主蛋白仍知之甚少。在本研究中,我们进行了酵母双杂交试验,以进一步探索P7-2与25种I型水稻SKP1样(OSK)蛋白之间的相互作用,发现P7-2与8个具有不同结合亲和力的OSK成员相互作用。免疫共沉淀试验进一步证实了P7-2与OSK1、OSK5和OSK20的相互作用。还表明,P7-2与OSK1和水稻Cullin-1能够形成SCF复合物。此外,酵母双杂交试验表明,P7-2与水稻和玉米植株中的赤霉素不敏感矮化2(GID2)相互作用,这对调节GA信号通路至关重要。进一步证明,P7-2的N端区域是与GID2相互作用所必需的。总体而言,这些结果表明P7-2在水稻中作为SCF复合物的一个组分发挥作用,P7-2与GID2的相互作用暗示了GA信号通路在RBSDV感染过程中的可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9fb/5426791/6b1730bb219b/pone.0177518.g004.jpg

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5
Making sense of hormone-mediated defense networking: from rice to Arabidopsis.
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Rice black-streaked dwarf virus genome segment S5 is a bicistronic mRNA in infected plants.
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