斑马鱼作为心脏病的模型;Danio Rerio天然心脏细丝的冷冻电镜结构。

IF 1.7 3区 生物学 Q4 CELL BIOLOGY
Marston Bradshaw, John M Squire, Edward Morris, Georgia Atkinson, Rebecca Richardson, Jon Lees, Massimo Caputo, Giulia M Bigotti, Danielle M Paul
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引用次数: 0

摘要

肌动蛋白、原肌球蛋白和肌钙蛋白是构成心脏细丝收缩装置的蛋白质,在不同物种中高度保守。我们用冷冻电镜研究了斑马鱼心脏细丝和肌动蛋白细丝的三维结构。由于70%的人类基因具有明显的斑马鱼同源物,85%的致病基因被保护,斑马鱼是研究人类疾病的良好动物模型。我们对斑马鱼细丝的结构揭示了组成蛋白质之间的分子相互作用,表明该复合物的基本组织与人类重组细丝中报道的相同。斑马鱼心脏F-肌动蛋白的重建表明,在14个肌动蛋白亚基的延伸长度上,与人类心脏肌动蛋白没有偏差。将斑马鱼同源性模型建模到我们的地图中,使我们能够详细比较与人类模型的相似性。肌钙蛋白-T的结构相似性,特别是已知含有肥厚型心肌病“热点”的区域,证实了斑马鱼研究这些致病突变的合适性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Zebrafish as a model for cardiac disease; Cryo-EM structure of native cardiac thin filaments from Danio Rerio.

Zebrafish as a model for cardiac disease; Cryo-EM structure of native cardiac thin filaments from Danio Rerio.

Zebrafish as a model for cardiac disease; Cryo-EM structure of native cardiac thin filaments from Danio Rerio.

Zebrafish as a model for cardiac disease; Cryo-EM structure of native cardiac thin filaments from Danio Rerio.

Actin, tropomyosin and troponin, the proteins that comprise the contractile apparatus of the cardiac thin filament, are highly conserved across species. We have used cryo-EM to study the three-dimensional structure of the zebrafish cardiac thin and actin filaments. With 70% of human genes having an obvious zebrafish orthologue, and conservation of 85% of disease-causing genes, zebrafish are a good animal model for the study of human disease. Our structure of the zebrafish thin filament reveals the molecular interactions between the constituent proteins, showing that the fundamental organisation of the complex is the same as that reported in the human reconstituted thin filament. A reconstruction of zebrafish cardiac F-actin demonstrates no deviations from human cardiac actin over an extended length of 14 actin subunits. Modelling zebrafish homology models into our maps enabled us to compare, in detail, the similarity with human models. The structural similarities of troponin-T in particular, a region known to contain a hypertrophic cardiomyopathy 'hotspot', confirm the suitability of zebrafish to study these disease-causing mutations.

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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: The Journal of Muscle Research and Cell Motility has as its main aim the publication of original research which bears on either the excitation and contraction of muscle, the analysis of any one of the processes involved therein, the processes underlying contractility and motility of animal and plant cells, the toxicology and pharmacology related to contractility, or the formation, dynamics and turnover of contractile structures in muscle and non-muscle cells. Studies describing the impact of pathogenic mutations in genes encoding components of contractile structures in humans or animals are welcome, provided they offer mechanistic insight into the disease process or the underlying gene function. The policy of the Journal is to encourage any form of novel practical study whatever its specialist interest, as long as it falls within this broad field. Theoretical essays are welcome provided that they are concise and suggest practical ways in which they may be tested. Manuscripts reporting new mutations in known disease genes without validation and mechanistic insight will not be considered. It is the policy of the journal that cells lines, hybridomas and DNA clones should be made available by the developers to any qualified investigator. Submission of a manuscript for publication constitutes an agreement of the authors to abide by this principle.
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