Tracking COL1A1 RNA in osteogenesis imperfecta: Splice-defective transcripts initiate transport from the gene but are retained within the SC35 domain

被引:120
作者
Johnson, C
Primorac, D
McKinstry, M
McNeil, J
Rowe, D
Lawrence, JB
机构
[1] Univ Massachusetts, Sch Med, Dept Cell Biol, Worcester, MA 01655 USA
[2] Univ Connecticut, Ctr Hlth, Dept Pediat, Farmington, CT 06030 USA
关键词
osteogenesis imperfecta; RNA transport; RNA splicing; nuclear structure; collagen;
D O I
10.1083/jcb.150.3.417
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
This study illuminates the intra-nuclear fate of COL1A1 RNA in osteogenesis imperfecta (OI) Type I. Patient fibroblasts were shown to carry a heterozygous defect in splicing of intron 26, blocking mRNA export. Both the normal and mutant allele associated with a nuclear RNA track, a localized accumulation of posttranscriptional RNA emanating to one side of the gene. Both tracks had slightly elongated or globular morphology, but mutant tracks were cytologically distinct in that they lacked the normal polar distribution of intron 26. Normal COL1A1 RNA tracks distribute throughout an SC-35 domain, from the gene at the periphery. Normally, almost all 50 COL1A1 introns are spliced at or adjacent to the gene, before mRNA transits thru the domain. Normal COL1A1 transcripts may undergo maturation needed for export within the domain such as removal of a slow-splicing intron (shown for intron 24), after which they may disperse. Splice-defective transcripts still distribute thru the SC-35 domain, moving similar to 1-3 mu m from the gene. However, microfluorimetric analyses demonstrate mutant transcripts accumulate to abnormal levels within the track and domain. Hence, mutant transcripts initiate transport from the gene, but are impeded in exit from the SC-35 domain,This identifies a previously undefined step in mRNA export, involving movement through an SC-35 domain. A model is presented in which maturation and release for export of COL1A1 mRNA is linked to rapid cycling of metabolic complexes within the splicing factor domain, adjacent to the gene. This paradigm may apply to SC-35 domains more generally, which we suggest may be nucleated at sites of high demand and comprise factors being actively used to facilitate expression of associated loci.
引用
收藏
页码:417 / 431
页数:15
相关论文
共 78 条
[31]   Intron-independent association of splicing factors with active genes [J].
Jolly, C ;
Vourc'h, C ;
Robert-Nicoud, M ;
Morimoto, RI .
JOURNAL OF CELL BIOLOGY, 1999, 145 (06) :1133-1143
[32]   MUTATIONS IN NUCLEOLAR PROTEINS LEAD TO NUCLEOLAR ACCUMULATION OF POLYA(+) RNA IN SACCHAROMYCES-CEREVISIAE [J].
KADOWAKI, T ;
SCHNEITER, R ;
HITOMI, M ;
TARTAKOFF, AM .
MOLECULAR BIOLOGY OF THE CELL, 1995, 6 (09) :1103-1110
[33]   Splicing factors associate with hyperphosphorylated RNA polymerase II in the absence of pre-mRNA [J].
Kim, E ;
Du, L ;
Bregman, DB ;
Warren, SL .
JOURNAL OF CELL BIOLOGY, 1997, 136 (01) :19-28
[34]  
Kramer Joseph, 1994, Trends in Cell Biology, V4, P35, DOI 10.1016/0962-8924(94)90001-9
[35]   Reduced mobility of the alternate splicing factor (ASF) through the nucleoplasm and steady state speckle compartments [J].
Kruhlak, MJ ;
Lever, MA ;
Fischle, W ;
Verdin, E ;
Bazett-Jones, DP ;
Hendzel, MJ .
JOURNAL OF CELL BIOLOGY, 2000, 150 (01) :41-51
[36]   MUTATIONS IN COLLAGEN GENES - CAUSES OF RARE AND SOME COMMON DISEASES IN HUMANS [J].
KUIVANIEMI, H ;
TROMP, G ;
PROCKOP, DJ .
FASEB JOURNAL, 1991, 5 (07) :2052-2060
[37]   Nuclear RNA accumulations contain released transcripts and exhibit specific distributions with respect to Sm antigen foci [J].
Lampel, S ;
Bridger, JM ;
Zirbel, RM ;
Mathieu, UR ;
Lichter, P .
DNA AND CELL BIOLOGY, 1997, 16 (10) :1133-1142
[38]   PROBING FUNCTIONAL-ORGANIZATION WITHIN THE NUCLEUS - IS GENOME STRUCTURE INTEGRATED WITH RNA-METABOLISM [J].
LAWRENCE, JB ;
CARTER, KC ;
XING, X .
COLD SPRING HARBOR SYMPOSIA ON QUANTITATIVE BIOLOGY, 1993, 58 :807-818
[39]  
LAWRENCE JB, 1988, CELL, V52, P51
[40]   HIGHLY LOCALIZED TRACKS OF SPECIFIC TRANSCRIPTS WITHIN INTERPHASE NUCLEI VISUALIZED BY INSITU HYBRIDIZATION [J].
LAWRENCE, JB ;
SINGER, RH ;
MARSELLE, LM .
CELL, 1989, 57 (03) :493-502