Mobile microRNAs (miRNAs) serve as local and long-distance signals in the developmental patterning and stress responses in plants. However, mechanisms governing the non-cell autonomous activities of miRNAs remain elusive. Here, we show that mutations that disrupt microtubule dynamics are specifically defective for the non-cell autonomous actions of mobile miRNAs, including miR165/6 that is produced in the endodermis and moves to the vasculature to pattern xylem cell fates in Arabidopsis roots. We show that KTN1, a subunit of a microtubule-severing enzyme, is required in source cells to inhibit the loading of miR165/6 into ARGONUATE1 (AGO1), which is cell autonomous, to enable the miRNA to exit the cell. Microtubule disruption enhances the association of miR165/6 with AGO1 in the cytoplasm. These findings suggest that although cell-autonomous miRNAs load onto AGO1 in the nucleus, the cytoplasmic AGO1 loading of mobile miRNAs is a key step regulated by microtubules to promote the range of miRNA cell-to-cell movement.
Microtubules promote the non-cell autonomous action of microRNAs by inhibiting their cytoplasmic loading onto ARGONAUTE1 in Arabidopsis.
微管通过抑制拟南芥中microRNA的细胞质加载到ARGONAUTE1上,促进microRNA的非细胞自主作用
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作者:Fan Lusheng, Zhang Cui, Gao Bin, Zhang Yong, Stewart Ethan, Jez Jakub, Nakajima Keiji, Chen Xuemei
| 期刊: | Developmental Cell | 影响因子: | 8.700 |
| 时间: | 2022 | 起止号: | 2022 Apr 25; 57(8):995-1008 |
| doi: | 10.1016/j.devcel.2022.03.015 | 研究方向: | 细胞生物学 |
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