Transcriptional and post-transcriptional impact of toxic RNA in myotonic dystrophy

被引:133
作者
Osborne, Robert J. [1 ]
Lin, Xiaoyan [1 ]
Welle, Stephen [2 ]
Sobczak, Krzysztof [1 ]
O'Rourke, Jason R. [3 ]
Swanson, Maurice S. [3 ]
Thornton, Charles A. [1 ]
机构
[1] Univ Rochester, Sch Med & Dent, Dept Neurol, Rochester, NY 14642 USA
[2] Univ Rochester, Sch Med & Dent, Dept Med, Rochester, NY 14642 USA
[3] Univ Florida, Coll Med, Genet Inst, Dept Mol Genet & Microbiol, Gainesville, FL USA
基金
美国国家卫生研究院;
关键词
CARDIAC-SPECIFIC OVEREXPRESSION; RETICULUM CALCIUM-TRANSPORT; SKELETAL-MUSCLE; CTG REPEAT; TRINUCLEOTIDE REPEAT; MOLECULAR-BASIS; MESSENGER-RNA; MOUSE MODELS; PROTEIN; SARCOLIPIN;
D O I
10.1093/hmg/ddp058
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
Myotonic dystrophy type 1 (DM1) is an RNA dominant disease in which mutant transcripts containing an expanded CUG repeat (CUG(exp)) cause muscle dysfunction by interfering with biogenesis of other mRNAs. The toxic effects of mutant RNA are mediated partly through sequestration of splicing regulator Muscleblind-like 1 (Mbnl1), a protein that binds to CUG(exp) RNA. A gene that is prominently affected encodes chloride channel 1 (Clcn1), resulting in hyperexcitability of muscle (myotonia). To identify DM1-affected genes and study mechanisms for dysregulation, we performed global mRNA profiling in transgenic mice that express CUG(exp) RNA, when compared with Mbnl1 knockout and Clcn1 null mice. We found that the majority of changes induced by CUG(exp) RNA in skeletal muscle can be explained by reduced activity of Mbnl1, including many changes that are secondary to myotonia. The pathway most affected comprises genes involved in calcium signaling and homeostasis. Some effects of CUG(exp) RNA on gene expression are caused by abnormal alternative splicing or downregulation of Mbnl1-interacting mRNAs. However, several of the most highly dysregulated genes showed altered transcription, as indicated by parallel changes of the corresponding pre-mRNAs. These results support the idea that trans-dominant effects of CUG(exp) RNA on gene expression in this transgenic model may occur at the level of transcription, RNA processing and mRNA decay, and are mediated mainly but not entirely through sequestration of Mbnl1.
引用
收藏
页码:1471 / 1481
页数:11
相关论文
共 57 条
[1]   RNA-dependent integrin α3 protein localization regulated by the Muscleblind-like protein MLP1 [J].
Adereth, Y ;
Dammai, V ;
Kose, N ;
Li, RZ ;
Hsu, T .
NATURE CELL BIOLOGY, 2005, 7 (12) :1240-1247
[2]   Cardiac-specific overexpression of sarcolipin inhibits sarco(endo)plasmic reticulum Ca2+ ATPase (SERCA2a) activity and impairs cardiac function in mice [J].
Asahi, M ;
Otsu, K ;
Nakayama, H ;
Hikoso, S ;
Takeda, T ;
Gramolini, AO ;
Trivieri, MG ;
Oudit, GY ;
Morita, T ;
Kusakari, Y ;
Hirano, S ;
Hongo, K ;
Hirotani, S ;
Yamaguchi, O ;
Peterson, A ;
Backx, PH ;
Kurihara, S ;
Hori, M ;
MacLennan, DH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (25) :9199-9204
[3]   SOMATIC INSTABILITY OF CTG REPEAT IN MYOTONIC-DYSTROPHY [J].
ASHIZAWA, T ;
DUBEL, JR ;
HARATI, Y .
NEUROLOGY, 1993, 43 (12) :2674-2678
[4]   Targeted overexpression of sarcolipin in the mouse heart decreases sarcoplasmic reticulum calcium transport and cardiac contractility [J].
Babu, GJ ;
Bhupathy, P ;
Petrashevskaya, NN ;
Wang, HL ;
Raman, S ;
Wheeler, D ;
Jagatheesan, G ;
Wieczorek, D ;
Schwartz, A ;
Janssen, PML ;
Ziolo, MT ;
Periasamy, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (07) :3972-3979
[5]   Ablation of sarcolipin enhances sarcoplasmic reticulum calcium transport and atrial contractility [J].
Babu, Gopal J. ;
Bhupathy, Poornima ;
Timofeyev, Valeriy ;
Petrashevskaya, Natalia N. ;
Reiser, Peter J. ;
Chiamvimonvat, Nipavan ;
Periasamy, Muthu .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (45) :17867-17872
[6]   MOLECULAR-BASIS OF MYOTONIC-DYSTROPHY - EXPANSION OF A TRINUCLEOTIDE (CTG) REPEAT AT THE 3' END OF A TRANSCRIPT ENCODING A PROTEIN-KINASE FAMILY MEMBER [J].
BROOK, JD ;
MCCURRACH, ME ;
HARLEY, HG ;
BUCKLER, AJ ;
CHURCH, D ;
ABURATANI, H ;
HUNTER, K ;
STANTON, VP ;
THIRION, JP ;
HUDSON, T ;
SOHN, R ;
ZEMELMAN, B ;
SNELL, RG ;
RUNDLE, SA ;
CROW, S ;
DAVIES, J ;
SHELBOURNE, P ;
BUXTON, J ;
JONES, C ;
JUVONEN, V ;
JOHNSON, K ;
HARPER, PS ;
SHAW, DJ ;
HOUSMAN, DE .
CELL, 1992, 68 (04) :799-808
[7]   A network-based analysis of systemic inflammation in humans [J].
Calvano, SE ;
Xiao, WZ ;
Richards, DR ;
Felciano, RM ;
Baker, HV ;
Cho, RJ ;
Chen, RO ;
Brownstein, BH ;
Cobb, JP ;
Tschoeke, SK ;
Miller-Graziano, C ;
Moldawer, LL ;
Mindrinos, MN ;
Davis, RW ;
Tompkins, RG ;
Lowry, SF .
NATURE, 2005, 437 (7061) :1032-1037
[8]   Loss of the muscle-specific chloride channel in type 1 myotonic dystrophy due to misregulated alternative splicing [J].
Charlet-B, N ;
Savkur, RS ;
Singh, G ;
Philips, AV ;
Grice, EA ;
Cooper, TA .
MOLECULAR CELL, 2002, 10 (01) :45-53
[9]   Expansion of a CUG trinucleotide repeat in the 3' untranslated region of myotonic dystrophy protein kinase transcripts results in nuclear retention of transcripts [J].
Davis, BM ;
McCurrach, ME ;
Taneja, KL ;
Singer, RH ;
Housman, DE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (14) :7388-7393
[10]   RNA leaching of transcription factors disrupts transcription in myotonic dystrophy [J].
Ebralidze, A ;
Wang, Y ;
Petkova, V ;
Ebralidse, K ;
Junghans, RP .
SCIENCE, 2004, 303 (5656) :383-387