Palazzo Alexander F, Springer Michael, Shibata Yoko, Lee Chung-Sheng, Dias Anusha P, Rapoport Tom A
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts, United States of America.
PLoS Biol. 2007 Dec;5(12):e322. doi: 10.1371/journal.pbio.0050322.
In eukaryotic cells, most mRNAs are exported from the nucleus by the transcription export (TREX) complex, which is loaded onto mRNAs after their splicing and capping. We have studied in mammalian cells the nuclear export of mRNAs that code for secretory proteins, which are targeted to the endoplasmic reticulum membrane by hydrophobic signal sequences. The mRNAs were injected into the nucleus or synthesized from injected or transfected DNA, and their export was followed by fluorescent in situ hybridization. We made the surprising observation that the signal sequence coding region (SSCR) can serve as a nuclear export signal of an mRNA that lacks an intron or functional cap. Even the export of an intron-containing natural mRNA was enhanced by its SSCR. Like conventional export, the SSCR-dependent pathway required the factor TAP, but depletion of the TREX components had only moderate effects. The SSCR export signal appears to be characterized in vertebrates by a low content of adenines, as demonstrated by genome-wide sequence analysis and by the inhibitory effect of silent adenine mutations in SSCRs. The discovery of an SSCR-mediated pathway explains the previously noted amino acid bias in signal sequences and suggests a link between nuclear export and membrane targeting of mRNAs.
在真核细胞中,大多数mRNA通过转录输出(TREX)复合体从细胞核输出,该复合体在mRNA剪接和加帽后加载到mRNA上。我们在哺乳动物细胞中研究了编码分泌蛋白的mRNA的核输出,这些分泌蛋白通过疏水信号序列靶向内质网膜。将mRNA注射到细胞核中或由注射或转染的DNA合成,然后通过荧光原位杂交追踪其输出。我们有一个惊人的发现,即信号序列编码区(SSCR)可以作为缺乏内含子或功能性帽的mRNA的核输出信号。即使是含有内含子的天然mRNA的输出也会被其SSCR增强。与传统输出一样,SSCR依赖途径需要TAP因子,但TREX组分的缺失只有中等程度的影响。全基因组序列分析以及SSCR中沉默腺嘌呤突变的抑制作用表明,在脊椎动物中,SSCR输出信号的特征似乎是腺嘌呤含量低。SSCR介导途径的发现解释了先前在信号序列中注意到的氨基酸偏差,并表明mRNA的核输出与膜靶向之间存在联系。