SR蛋白
RNA剪接
生物
选择性拼接
拟南芥
拼接因子
细胞生物学
RNA结合蛋白
磷酸化
基因
内含子
遗传学
外显子剪接增强剂
开花位点C
基因家族
基因表达
突变体
核糖核酸
信使核糖核酸
作者
Tongtong Wang,Xiaofeng Wang,Haiyan Wang,Chao Yu,Chengyun Xiao,Yiwu Zhao,Huanan Han,Shuangshuang Zhao,Qun Shao,Jianhua Zhu,Yanxiu Zhao,Pingping Wang,Changle Ma
摘要
Alternative splicing of pre-mRNAs is crucial for plant growth and development. Serine/arginine-rich (SR) proteins are a conserved family of RNA-binding proteins that are critical for both constitutive and alternative splicing. However, how phosphorylation of SR proteins regulates gene transcription and alternative splicing during plant development is poorly understood. We found that the Arabidopsis thaliana L. SR protein-specific kinase II family proteins (SRPKIIs) play an important role in plant development, including flowering. SRPKIIs regulate the phosphorylation status of a subset of specific SR proteins, including SR45 and SC35, which subsequently mediates their subcellular localization. A phospho-dead SR45 mutant inhibits the assembly of the apoptosis-and splicing-associated protein complex and thereby upregulates the expression of FLOWERING LOCUS C (FLC) via epigenetic modification. The splicing efficiency of FLC introns was significantly increased in the shoot apex of the srpkii mutant. Transcriptomic analysis revealed that SRPKIIs regulate the alternative splicing of c. 400 genes, which largely overlap with those regulated by SR45 and SC35-SCL family proteins. In summary, we found that Arabidopsis SRPKIIs specifically affect the phosphorylation status of a subset SR proteins and regulate the expression and alternative splicing of FLC to control flowering time.
科研通智能强力驱动
Strongly Powered by AbleSci AI