A SYNTHETIC, CHEMICALLY-MODIFIED RIBOZYME ELIMINATES AMELOGENIN, THE MAJOR TRANSLATION PRODUCT IN DEVELOPING MOUSE ENAMEL IN-VIVO

被引:128
作者
LYNGSTADAAS, SP
RISNES, S
SPROAT, BS
THRANE, PS
PRYDZ, HP
机构
[1] UNIV OSLO,NATL HOSP,BIOTECHNOL CTR OSLO,N-0317 OSLO,NORWAY
[2] UNIV OSLO,NATL HOSP,LAB ANIM UNIT,N-0317 OSLO,NORWAY
[3] UNIV OSLO,FAC DENT,DEPT ORAL BIOL,N-0316 OSLO,NORWAY
[4] NORWEGIAN RADIUM HOSP,DEPT PATHOL,N-0310 OSLO,NORWAY
[5] RIBONET GMBH,D-37079 GOTTINGEN,GERMANY
关键词
2'-O-ALLYLRIBONUCLEOTIDES; AMELOGENIN; BIOMINERALIZATION; DENTAL ENAMEL; SYNTHETIC HAMMERHEAD RIBOZYMES;
D O I
10.1002/j.1460-2075.1995.tb00207.x
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
Ribozymes are small RNA structures capable of cleaving RNA target molecules in a catalytic fashion. Designed ribozymes can be targeted to specific mRNAs, blocking their expression without affecting normal functions of other genes. Because of their specific and catalytic mode of action ribozymes are ideal agents for therapeutic interventions against malfunctioning or foreign gene products, Here we report successful experiments to 'knock out' a major translation product in vivo using synthesized, chemically modified ribozymes, The ribozymes, designed to cleave amelogenin mRNA, were injected close to developing mandibular molar teeth in newborn mice, resulting in a prolonged and specific arrest of amelogenin synthesis not caused by general toxicity, No carriers were required to assist cellular uptake, Amelogenins are highly conserved tissue-specific proteins that play a central role in mammalian enamel biomineralization. Ultrastructural analyses of in vivo ribozyme-treated teeth demonstrated their failure to develop normally mineralized enamel, These results demonstrate that synthesized ribozymes can be highly effective in achieving both timed and localized 'knock-out' of important gene products in vivo, and suggest new possibilities for suppression of gene expression for research and therapeutic purposes.
引用
收藏
页码:5224 / 5229
页数:6
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