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PIGB 维持果蝇骨骼肌中的核层组织。

PIGB maintains nuclear lamina organization in skeletal muscle of Drosophila.

机构信息

Department of Life Science, College of Science, Rikkyo University, Tokyo, Japan.

Department of Molecular Biology, Keio University School of Medicine, Tokyo, Japan.

出版信息

J Cell Biol. 2024 Feb 5;223(2). doi: 10.1083/jcb.202301062. Epub 2024 Jan 23.

Abstract

The nuclear lamina (NL) plays various roles and participates in nuclear integrity, chromatin organization, and transcriptional regulation. Lamin proteins, the main components of the NL, form a homogeneous meshwork structure under the nuclear envelope. Lamins are essential, but it is unknown whether their homogeneous distribution is important for nuclear function. Here, we found that PIGB, an enzyme involved in glycosylphosphatidylinositol (GPI) synthesis, is responsible for the homogeneous lamin meshwork in Drosophila. Loss of PIGB resulted in heterogeneous distributions of B-type lamin and lamin-binding proteins in larval muscles. These phenotypes were rescued by expression of PIGB lacking GPI synthesis activity. The PIGB mutant exhibited changes in lamina-associated domains that are large heterochromatic genomic regions in the NL, reduction of nuclear stiffness, and deformation of muscle fibers. These results suggest that PIGB maintains the homogeneous meshwork of the NL, which may be essential for chromatin distribution and nuclear mechanical properties.

摘要

核纤层(NL)发挥着多种作用,并参与核完整性、染色质组织和转录调控。核纤层蛋白是 NL 的主要成分,在核膜下形成均匀的网格状结构。 lamin 蛋白是必需的,但它们的均匀分布是否对核功能很重要尚不清楚。在这里,我们发现参与糖基磷脂酰肌醇(GPI)合成的酶 PIGB 负责果蝇中 B 型 lamin 和 lamin 结合蛋白的均匀分布。PIGB 的缺失导致幼虫肌肉中 B 型 lamin 和 lamin 结合蛋白的不均匀分布。这些表型可以通过表达缺乏 GPI 合成活性的 PIGB 来挽救。PIGB 突变体表现出核纤层相关结构域的变化,这些结构域是 NL 中大型异染色质基因组区域,核硬度降低,以及肌肉纤维变形。这些结果表明,PIGB 维持 NL 的均匀网格状结构,这可能对染色质分布和核力学性质至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81ea/10808031/4d7afe755a3d/JCB_202301062_GA.jpg

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