Mili Stavroula, Moissoglu Konstadinos, Macara Ian G
Department of Microbiology, Center for Cell Signaling, University of Virginia, HSC, Charlottesville, Virginia 22908-0577, USA.
Nature. 2008 May 1;453(7191):115-9. doi: 10.1038/nature06888.
RNA localization is important for the establishment and maintenance of polarity in multiple cell types. Localized RNAs are usually transported along microtubules or actin filaments and become anchored at their destination to some underlying subcellular structure. Retention commonly involves actin or actin-associated proteins, although cytokeratin filaments and dynein anchor certain RNAs. RNA localization is important for diverse processes ranging from cell fate determination to synaptic plasticity; however, so far there have been few comprehensive studies of localized RNAs in mammalian cells. Here we have addressed this issue, focusing on migrating fibroblasts that polarize to form a leading edge and a tail in a process that involves asymmetric distribution of RNAs. We used a fractionation scheme combined with microarrays to identify, on a genome-wide scale, RNAs that localize in protruding pseudopodia of mouse fibroblasts in response to migratory stimuli. We find that a diverse group of RNAs accumulates in such pseudopodial protrusions. Through their 3' untranslated regions these transcripts are anchored in granules concentrated at the plus ends of detyrosinated microtubules. RNAs in the granules associate with the adenomatous polyposis coli (APC) tumour suppressor and the fragile X mental retardation protein (FMRP). APC is required for the accumulation of transcripts in protrusions. Our results suggest a new type of RNA anchoring mechanism as well as a new, unanticipated function for APC in localizing RNAs.
RNA定位对于多种细胞类型极性的建立和维持至关重要。定位的RNA通常沿着微管或肌动蛋白丝运输,并在其目的地锚定到一些潜在的亚细胞结构上。尽管细胞角蛋白丝和动力蛋白可锚定某些RNA,但RNA的滞留通常涉及肌动蛋白或肌动蛋白相关蛋白。RNA定位对于从细胞命运决定到突触可塑性等多种过程都很重要;然而,到目前为止,在哺乳动物细胞中对定位RNA的全面研究还很少。在此,我们针对这一问题进行了研究,重点关注迁移的成纤维细胞,这些细胞在涉及RNA不对称分布的过程中极化形成前缘和尾部。我们使用了一种分级分离方案结合微阵列,在全基因组范围内鉴定响应迁移刺激而定位在小鼠成纤维细胞突出伪足中的RNA。我们发现一组多样的RNA在这种伪足突起中积累。通过其3'非翻译区,这些转录本锚定在集中于去酪氨酸化微管正端的颗粒中。颗粒中的RNA与腺瘤性息肉病结肠(APC)肿瘤抑制因子和脆性X智力低下蛋白(FMRP)相关。APC是转录本在突起中积累所必需的。我们的结果提示了一种新型的RNA锚定机制以及APC在RNA定位中的一种新的、意想不到的功能。