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Farnesylated heat shock protein 40 is a component of membrane-bound RISC in Arabidopsis

机译:法尼基化热休克蛋白40是拟南芥中膜结合RISC的成分

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ARGONAUTE1 (AGO1) binds directly to small regulatory RNA and is a key effector protein of post-transcriptional gene silencing mediated by microRNA (miRNA) and small interfering RNA (siRNA) in Arabidopsis. The formation of an RNA-induced silencing complex (RISC) of AGO1 and small RNA requires the function of the heat shock protein 70/90 chaperone system. Some functions of AGO1 occur in association with endomembranes, in particular the rough endoplasmic reticulum (RER), but proteins interacting with AGO1 in membrane fractions remain unidentified. In this study, we show that the farnesylated heat shock protein 40 homologs, J2 and J3, associate with AGO1 in membrane fractions in a manner that involves protein farnesylation. We also show that three changes in AGO1 function are detectable in mutants in protein farnesylation and J2/J3. First, perturbations of the HSP40/70/90 pathway by mutation of J3, HSP90, and farnesyl transferase affect the amounts of AGO1 associated with membranes. Second, miRNA association with membrane-bound polysomes is increased in farnesyl transferase and farnesylation-deficient J2/J3 mutants. Third, silencing by noncell autonomously acting short interfering RNAs is impaired. These observations highlight the involvement of farnesylated J2/J3 in small RNA-mediated gene regulation, and suggest that the importance of chaperone-AGO1 interaction is not limited to the RISC assembly process.
机译:ARGONAUTE1(AGO1)直接与小调节RNA结合,是拟南芥中由microRNA(miRNA)和小干扰RNA(siRNA)介导的转录后基因沉默的关键效应蛋白。 RNA诱导的AGO1和小RNA沉默复合物(RISC)的形成需要热激蛋白70/90伴侣系统的功能。 AGO1的某些功能与子宫内膜有关,特别是粗糙的内质网(RER),但是与AGO1相互作用的蛋白质在膜级分中仍未确定。在这项研究中,我们表明,法尼基化的热休克蛋白40的同系物J2和J3与AGO1在膜级分中的结合方式涉及蛋白质法呢基化。我们还表明,在蛋白质法呢基化和J2 / J3突变体中可检测到AGO1功能的三个变化。首先,J3,HSP90和法呢基转移酶突变对HSP40 / 70/90途径的干扰影响与膜相关的AGO1的数量。其次,在法呢基转移酶和法呢基化缺陷的J2 / J3突变体中,与膜结合多核糖体的miRNA结合增加。第三,削弱了非细胞自主作用的短干扰RNA的沉默。这些观察结果突出了法呢基化的J2 / J3参与小RNA介导的基因调控,并表明伴侣-AGO1相互作用的重要性不仅限于RISC组装过程。

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