Bouché Nicolas, Lauressergues Dominique, Gasciolli Virginie, Vaucheret Hervé
Laboratoire de Biologie Cellulaire, Institut Jean-Pierre Bourgin, INRA, Versailles, France.
EMBO J. 2006 Jul 26;25(14):3347-56. doi: 10.1038/sj.emboj.7601217. Epub 2006 Jun 29.
Plants contain more DICER-LIKE (DCL) enzymes and double-stranded RNA binding (DRB) proteins than other eukaryotes, resulting in increased small RNA network complexities. Analyses of single, double, triple and quadruple dcl mutants exposed DCL1 as a sophisticated enzyme capable of producing both microRNAs (miRNAs) and siRNAs, unlike the three other DCLs, which only produce siRNAs. Depletion of siRNA-specific DCLs results in unbalanced small RNA levels, indicating a redeployment of DCL/DRB complexes. In particular, DCL2 antagonizes the production of miRNAs and siRNAs by DCL1 in certain circumstances and affects development deleteriously in dcl1 dcl4 and dcl1 dcl3 dcl4 mutant plants, whereas dcl1 dcl2 dcl3 dcl4 quadruple mutant plants are viable. We also show that viral siRNAs are produced by DCL4, and that DCL2 can substitute for DCL4 when this latter activity is reduced or inhibited by viruses, pointing to the competitiveness of DCL2. Given the complexity of the small RNA repertoire in plants, the implication of each DCL, in particular DCL2, in the production of small RNAs that have no known function will constitute one of the next challenges.
与其他真核生物相比,植物含有更多的DICER-LIKE(DCL)酶和双链RNA结合(DRB)蛋白,导致小RNA网络的复杂性增加。对单、双、三、四重dcl突变体的分析表明,与其他三种仅产生小干扰RNA(siRNA)的DCL不同,DCL1是一种复杂的酶,能够产生微小RNA(miRNA)和siRNA。siRNA特异性DCL的缺失导致小RNA水平失衡,表明DCL/DRB复合物重新部署。特别是,在某些情况下,DCL2会拮抗DCL1产生miRNA和siRNA,并对dcl1 dcl4和dcl1 dcl3 dcl4突变体植物的发育产生有害影响,而dcl1 dcl2 dcl3 dcl4四重突变体植物是可行的。我们还表明,病毒siRNA由DCL4产生,当DCL4的活性因病毒而降低或受到抑制时,DCL2可以替代DCL4,这表明DCL2具有竞争力。鉴于植物中小RNA库的复杂性,每种DCL,特别是DCL2,在产生尚无已知功能的小RNA中的作用将构成下一个挑战之一。