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肌病与果蝇核糖体蛋白基因单倍体不足有关。

Cardiomyopathy is associated with ribosomal protein gene haplo-insufficiency in Drosophila melanogaster.

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Genetics. 2011 Nov;189(3):861-70. doi: 10.1534/genetics.111.131482. Epub 2011 Sep 2.

Abstract

The Minute syndrome in Drosophila melanogaster is characterized by delayed development, poor fertility, and short slender bristles. Many Minute loci correspond to disruptions of genes for cytoplasmic ribosomal proteins, and therefore the phenotype has been attributed to alterations in translational processes. Although protein translation is crucial for all cells in an organism, it is unclear why Minute mutations cause effects in specific tissues. To determine whether the heart is sensitive to haplo-insufficiency of genes encoding ribosomal proteins, we measured heart function of Minute mutants using optical coherence tomography. We found that cardiomyopathy is associated with the Minute syndrome caused by haplo-insufficiency of genes encoding cytoplasmic ribosomal proteins. While mutations of genes encoding non-Minute cytoplasmic ribosomal proteins are homozygous lethal, heterozygous deficiencies spanning these non-Minute genes did not cause a change in cardiac function. Deficiencies of genes for non-Minute mitochondrial ribosomal proteins also did not show abnormal cardiac function, with the exception of a heterozygous disruption of mRpS33. We demonstrate that cardiomyopathy is a common trait of the Minute syndrome caused by haplo-insufficiency of genes encoding cytoplasmic ribosomal proteins. In contrast, most cases of heterozygous deficiencies of genes encoding non-Minute ribosomal proteins have normal heart function in adult Drosophila.

摘要

果蝇的 Minute 综合征的特征是发育迟缓、生育能力差和短而细的刚毛。许多 Minute 基因座对应于细胞质核糖体蛋白基因的破坏,因此该表型归因于翻译过程的改变。尽管蛋白质翻译对生物体中的所有细胞都至关重要,但不清楚为什么 Minute 突变会在特定组织中产生影响。为了确定编码核糖体蛋白的基因的单倍体不足是否使心脏对其敏感,我们使用光学相干断层扫描技术测量了 Minute 突变体的心脏功能。我们发现,心脏肌病与由编码细胞质核糖体蛋白的基因单倍体不足引起的 Minute 综合征有关。虽然编码非 Minute 细胞质核糖体蛋白的基因突变是纯合致死的,但跨越这些非 Minute 基因的杂合缺陷并未导致心脏功能发生变化。非 Minute 线粒体核糖体蛋白基因的缺失也没有显示出异常的心脏功能,除了 mRpS33 的杂合破坏。我们证明,心脏肌病是由编码细胞质核糖体蛋白的基因单倍体不足引起的 Minute 综合征的共同特征。相比之下,在成年果蝇中,编码非 Minute 核糖体蛋白的基因的大多数杂合缺陷都具有正常的心脏功能。

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