Human microRNAs are processed from capped, polyadenylated transcripts that can also function as mRNAs

被引:1296
作者
Cai, XZ
Hagedorn, CH
Cullen, BR
机构
[1] Duke Univ, Med Ctr, Dept Mol Genet & Microbiol, Durham, NC 27710 USA
[2] Duke Univ, Med Ctr, Howard Hughes Med Inst, Durham, NC 27710 USA
[3] Univ Kansas, Med Ctr, Dept Med, Kansas City, KS 66103 USA
[4] Univ Kansas, Med Ctr, Dept Pharmacol, Kansas City, KS USA
关键词
microRNAs; RNA interference; RNA processing;
D O I
10.1261/rna.7135204
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
The factors regulating the expression of microRNAs (miRNAs), a ubiquitous family of similar to22-nt noncoding regulatory RNAs, remain undefined. However, it is known that miRNAs are first transcribed as a largely unstructured precursor, termed a primary miRNA (pri-miRNA), which is sequentially processed in the nucleus, to give the similar to65-nt pre-miRNA hairpin intermediate, and then in the cytoplasm, to give the mature miRNA. Here we have sought to identify the RNA polymerase responsible for miRNA transcription and to define the structure of a full-length human miRNA. We show that the pri-miRNA precursors for nine human miRNAs are both capped and polyadenylated and report the sequence of the full-length, similar to3433-nt pri-miR-21 RNA. This pri-miR-21 gene sequence is flanked 5' by a promoter element able to transcribe heterologous mRNAs and 3' by a consensus polyadenylation sequence. Nuclear processing of pri-miRNAs was found to be efficient, thus largely preventing the nuclear export of full-length pri-miRNAs. Nevertheless, an intact miRNA stem-loop precursor located in the 3' UTR of a protein coding gene only moderately inhibited expression of the linked open reading frame, probably because the 3' truncated mRNA could still be exported and expressed. Together, these data show that human pri-miRNAs are not only structurally similar to mRNAs but can, in fact, function both as pri-miRNAs and mRNAs.
引用
收藏
页码:1957 / 1966
页数:10
相关论文
共 32 条
[1]   Regulation of flowering time and floral organ identity by a microRNA and its APETALA2-like target genes [J].
Aukerman, MJ ;
Sakai, H .
PLANT CELL, 2003, 15 (11) :2730-2741
[2]   MicroRNAs: Genomics, biogenesis, mechanism, and function (Reprinted from Cell, vol 116, pg 281-297, 2004) [J].
Bartel, David P. .
CELL, 2007, 131 (04) :11-29
[3]   Exportin 5 is a RanGTP-dependent dsRNA-binding protein that mediates nuclear export of pre-miRNAs [J].
Bohnsack, MT ;
Czaplinski, K ;
Görlich, D .
RNA, 2004, 10 (02) :185-191
[4]   Trans-splicing and polyadenylation of let-7 microRNA primary transcripts [J].
Bracht, J ;
Hunter, S ;
Eachus, R ;
Weeks, P ;
Pasquinelli, AE .
RNA, 2004, 10 (10) :1586-1594
[5]   MicroRNAs modulate hematopoietic lineage differentiation [J].
Chen, CZ ;
Li, L ;
Lodish, HF ;
Bartel, DP .
SCIENCE, 2004, 303 (5654) :83-86
[6]   Purifying mRNAs with a high-affinity eIF4E mutant identifies the short 3′ poly(A) end phenotype [J].
Choi, YH ;
Hagedorn, CH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (12) :7033-7038
[7]   A 3′ exonuclease that specifically interacts with the 3′ end of histone mRNA [J].
Dominski, Z ;
Yang, XC ;
Kaygun, H ;
Dadlez, M ;
Marzluff, WF .
MOLECULAR CELL, 2003, 12 (02) :295-305
[8]   Cloning and expression of the rat vacuole membrane protein 1 (VMP1), a new gene activated in pancreas with acute pancreatitis, which promotes vacuole formation [J].
Dusetti, NJ ;
Jiang, YF ;
Vaccaro, MI ;
Tomasini, R ;
Samir, AA ;
Calvo, EL ;
Ropolo, A ;
Fiedler, F ;
Mallo, GV ;
Dagorn, JC ;
Iovanna, JL .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2002, 290 (02) :641-649
[9]   Genes and mechanisms related to RNA interference regulate expression of the small temporal RNAs that control C-elegans developmental timing [J].
Grishok, A ;
Pasquinelli, AE ;
Conte, D ;
Li, N ;
Parrish, S ;
Ha, I ;
Baillie, DL ;
Fire, A ;
Ruvkun, G ;
Mello, CC .
CELL, 2001, 106 (01) :23-34
[10]   An RNA-directed nuclease mediates post-transcriptional gene silencing in Drosophila cells [J].
Hammond, SM ;
Bernstein, E ;
Beach, D ;
Hannon, GJ .
NATURE, 2000, 404 (6775) :293-296