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黑腹果蝇巢式核纤层蛋白C基因的分子遗传学分析

Molecular genetic analysis of the nested Drosophila melanogaster lamin C gene.

作者信息

Schulze Sandra R, Curio-Penny Beatrice, Li Yuhong, Imani Reza A, Rydberg Lena, Geyer Pamela K, Wallrath Lori L

机构信息

Department of Biochemistry, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

Genetics. 2005 Sep;171(1):185-96. doi: 10.1534/genetics.105.043208. Epub 2005 Jun 18.

Abstract

Lamins are intermediate filaments that line the inner surface of the nuclear envelope, providing structural support and making contacts with chromatin. There are two types of lamins, A- and B-types, which differ in structure and expression. Drosophila possesses both lamin types, encoded by the LamC (A-type) and lamin Dm0 (B-type) genes. LamC is nested within an intron of the essential gene ttv. We demonstrate that null mutations in LamC are lethal, and expression of a wild-type LamC transgene rescues lethality of LamC but not ttv mutants. Mutations in the human A-type lamin gene lead to diseases called laminopathies. To determine if Drosophila might serve as a useful model to study lamin biology and disease mechanisms, we generated transgenic flies expressing mutant LamC proteins modeled after human disease-causing lamins. These transgenic animals display a nuclear lamin aggregation phenotype remarkably similar to that observed when human mutant A-type lamins are expressed in mammalian cells. LamC aggregates also cause disorganization of lamin Dm0, indicating interdependence of both lamin types for proper lamina assembly. Taken together, these data provide the first detailed genetic analysis of the LamC gene and support using Drosophila as a model to study the role of lamins in disease.

摘要

核纤层蛋白是位于核膜内表面的中间丝,提供结构支持并与染色质接触。核纤层蛋白有两种类型,A 型和 B 型,它们在结构和表达上有所不同。果蝇拥有这两种类型的核纤层蛋白,分别由 LamC(A 型)和核纤层蛋白 Dm0(B 型)基因编码。LamC 嵌套在必需基因 ttv 的一个内含子中。我们证明 LamC 的无效突变是致死性的,野生型 LamC 转基因的表达挽救了 LamC 突变体的致死性,但不能挽救 ttv 突变体的致死性。人类 A 型核纤层蛋白基因突变会导致称为核纤层蛋白病的疾病。为了确定果蝇是否可作为研究核纤层蛋白生物学和疾病机制的有用模型,我们生成了表达以人类致病核纤层蛋白为模型的突变体 LamC 蛋白的转基因果蝇。这些转基因动物表现出一种核纤层蛋白聚集表型,与在哺乳动物细胞中表达人类突变 A 型核纤层蛋白时观察到的表型非常相似。LamC 聚集也会导致核纤层蛋白 Dm0 的紊乱,表明两种核纤层蛋白类型对于正确的核纤层组装相互依赖。综上所述,这些数据提供了对 LamC 基因的首次详细遗传分析,并支持将果蝇作为研究核纤层蛋白在疾病中作用的模型。

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