期刊论文详细信息
Wellcome Open Research
Single-transcript multiplex in situ hybridisation reveals unique patterns of dystrophin isoform expression in the developing mammalian embryo
article
John C. W. Hildyard1  Abbe H. Crawford1  Faye Rawson1  Dominique O. Riddell1  Rachel C. M. Harron1  Richard J. Piercy1 
[1] Department of Clinical Science and Services, Royal Veterinary College
关键词: Dystrophin;    RNAscope;    In-situ hybridisation;    Embryogenesis;    Development;    Expression;    Dp427;    Dp140;    Dp71;    DMD;    DeltaE50-MD;    Muscle;    Nerve;    Brain;   
DOI  :  10.12688/wellcomeopenres.15762.2
学科分类:内科医学
来源: Wellcome
PDF
【 摘 要 】

Background: The dystrophin gene has multiple isoforms: full-length dystrophin (dp427) is principally known for its expression in skeletal and cardiac muscle, but is also expressed in the brain, and several internal promoters give rise to shorter, N-terminally truncated isoforms with wider tissue expression patterns (dp260 in the retina, dp140 in the brain and dp71 in many tissues). These isoforms are believed to play unique cellular roles both during embryogenesis and in adulthood, but their shared sequence identity at both mRNA and protein levels makes study of distinct isoforms challenging by conventional methods.Methods: RNAscope is a novelin-situ hybridisation technique that offers single-transcript resolution and the ability to multiplex, with different target sequences assigned to distinct fluorophores. Using probes designed to different regions of the dystrophin transcript (targeting 5', central and 3' sequences of the long dp427 mRNA), we can simultaneously detect and distinguish multiple dystrophin mRNA isoforms at sub-cellular histological levels. We have used these probes in healthy and dystrophic canine embryos to gain unique insights into isoform expression and distribution in the developing mammal.Results: Dp427 is found in developing muscle as expected, apparently enriched at nascent myotendinous junctions. Endothelial and epithelial surfaces express dp71 only. Within the brain and spinal cord, all three isoforms are expressed in spatially distinct regions: dp71 predominates within proliferating germinal layer cells, dp140 within maturing, migrating cells and dp427 appears within more established cell populations. Dystrophin is also found within developing bones and teeth, something previously unreported, and our data suggests orchestrated involvement of multiple isoforms in formation of these tissues.Conclusions: Overall, shorter isoforms appear associated with proliferation and migration, and longer isoforms with terminal lineage commitment: we discuss the distinct structural contributions and transcriptional demands suggested by these findings.

【 授权许可】

CC BY   

【 预 览 】
附件列表
Files Size Format View
RO202307130000723ZK.pdf 37186KB PDF download
  文献评价指标  
  下载次数:5次 浏览次数:2次