AGO1 homeostasis entails coexpression of MIR168 and AGO1 and preferential stabilization of miR168 by AGO1

被引:286
作者
Vaucheret, H [1 ]
Mallory, AC
Bartel, DP
机构
[1] INRA, Biol Cellulaire Lab, Inst Jean Pierre Bourgin, F-78026 Versailles, France
[2] Whitehead Inst Biomed Res, Cambridge, MA 02142 USA
[3] Howard Hughes Med Inst, Cambridge, MA 02142 USA
[4] MIT, Dept Biol, Cambridge, MA 02139 USA
关键词
D O I
10.1016/j.molcel.2006.03.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Arabidopsis ARGONAUTE1 (AGO1) encodes the RNA slicer enzyme of the microRNA (miRNA) pathway and is regulated by miR168-programmed, AGO1-catalyzed mRNA cleavage. Here, we describe two additional regulatory processes required for AGO1 homeostasis: transcriptional coregulation of MIR168 and AGO1 genes, and posttranscriptional stabilization of miR168 by AGO1. Disrupting any of these regulatory processes by using mutations or transgenes disturbs a proper functioning of the miRNA pathway. In contrast, minor perturbation leads to fine-tuned posttranscriptional adjustment of miR168 and AGO1 levels, thereby maintaining a proper balance of other miRNAs, which, together with AGO1, control the mRNA levels of miRNA targets. We suggest that miR168 stabilization occurs at the level of silencing-complex assembly and that modulating the efficiency of assembling miRNA-programmed silencing complexes will also be important in other contexts.
引用
收藏
页码:129 / 136
页数:8
相关论文
共 31 条
  • [1] Allen E, 2005, CELL, V121, P207, DOI 10.1016/j.cell.2005.04.004
  • [2] Genome-wide Insertional mutagenesis of Arabidopsis thaliana
    Alonso, JM
    Stepanova, AN
    Leisse, TJ
    Kim, CJ
    Chen, HM
    Shinn, P
    Stevenson, DK
    Zimmerman, J
    Barajas, P
    Cheuk, R
    Gadrinab, C
    Heller, C
    Jeske, A
    Koesema, E
    Meyers, CC
    Parker, H
    Prednis, L
    Ansari, Y
    Choy, N
    Deen, H
    Geralt, M
    Hazari, N
    Hom, E
    Karnes, M
    Mulholland, C
    Ndubaku, R
    Schmidt, I
    Guzman, P
    Aguilar-Henonin, L
    Schmid, M
    Weigel, D
    Carter, DE
    Marchand, T
    Risseeuw, E
    Brogden, D
    Zeko, A
    Crosby, WL
    Berry, CC
    Ecker, JR
    [J]. SCIENCE, 2003, 301 (5633) : 653 - 657
  • [3] Antiquity of microRNAs and their targets in land plants
    Axtell, MJ
    Bartel, DP
    [J]. PLANT CELL, 2005, 17 (06) : 1658 - 1673
  • [4] MicroRNAs: Genomics, biogenesis, mechanism, and function (Reprinted from Cell, vol 116, pg 281-297, 2004)
    Bartel, David P.
    [J]. CELL, 2007, 131 (04) : 11 - 29
  • [5] Arabidopsis ARGONAUTE1 is an RNA Slicer that selectively recruits rnicroRNAs and short interfering RNAs
    Baumberger, N
    Baulcombe, DC
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (33) : 11928 - 11933
  • [6] Bechtold N, 1998, METH MOL B, V82, P259
  • [7] AGO1 defines a novel locus of Arabidopsis controlling leaf development
    Bohmert, K
    Camus, I
    Bellini, C
    Bouchez, D
    Caboche, M
    Benning, C
    [J]. EMBO JOURNAL, 1998, 17 (01) : 170 - 180
  • [8] A microRNA as a translational repressor of APETALA2 in Arabidopsis flower development
    Chen, XM
    [J]. SCIENCE, 2004, 303 (5666) : 2022 - 2025
  • [9] Floral dip:: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana
    Clough, SJ
    Bent, AF
    [J]. PLANT JOURNAL, 1998, 16 (06) : 735 - 743
  • [10] Radial patterning of Arabidopsis shoots by class IIIHD-ZIP and KANADI genes
    Emery, JF
    Floyd, SK
    Alvarez, J
    Eshed, Y
    Hawker, NP
    Izhaki, A
    Baum, SF
    Bowman, JL
    [J]. CURRENT BIOLOGY, 2003, 13 (20) : 1768 - 1774