Morton Garret M, Toledo Maria Pilar, Zheng Chunfeng, Sultana Tania, Wang Yue J, Zheng Yiming, Megraw Timothy L
Department of Biomedical Sciences, Florida State University, Tallahassee, FL 32306-4300.
State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Faculty of Medicine and Life Sciences, Xiang'an Hospital of Xiamen University, Xiamen University, Xiamen, China 361102.
Mol Biol Cell. 2025 Jul 1;36(7):ar92. doi: 10.1091/mbc.E25-01-0003. Epub 2025 Jun 4.
In many cell types, disparate noncentrosomal microtubule-organizing centers (ncMTOC) replace functional centrosomes and serve the unique needs of the cell types in which they form. In fat body cells, an ncMTOC is organized on the nuclear surface. This perinuclear ncMTOC is anchored by the nesprin Msp300. Msp300 and the spectraplakin short stop (shot) are codependent for localization to the nuclear envelope to generate the ncMTOC, where they recruit the microtubule (MT) minus-end stabilizer Patronin (CAMSAP). The gene is complex, encoding at least 11 isoforms. Here, we show that two Msp300 isoforms, Msp300-PE and -PG, are required and one, Msp300-PE, appears sufficient to generate the ncMTOC. Loss of Msp300-PE/-PG impedes shot and Patronin localization to the nuclear surface and disrupts the MT array, endosomal trafficking, and nuclear positioning. Furthermore, upon loss of Msp300-PE and -PG, other Msp300 isoforms are retained at the nuclear surface despite the loss of nuclear positioning and MT organization, indicating that non-Msp300-PE/-PG isoforms are not sufficient to generate the ncMTOC. Msp300-PE has an unusual domain structure, including a lack of a KASH domain and very few spectrin repeats and appears, therefore, to have derived the function to generate an ncMTOC on the nuclear surface.
在许多细胞类型中,不同的非中心体微管组织中心(ncMTOC)取代了功能性中心体,并满足其形成所在细胞类型的独特需求。在脂肪体细胞中,一个ncMTOC在核表面组装。这个核周ncMTOC由nesprin Msp300锚定。Msp300和光谱斑蛋白短停(Shot)相互依赖,以定位于核膜从而生成ncMTOC,在那里它们招募微管(MT)负端稳定剂Patronin(CAMSAP)。该基因很复杂,编码至少11种异构体。在这里,我们表明两种Msp300异构体Msp300-PE和-PG是必需的,并且一种,即Msp300-PE,似乎足以生成ncMTOC。Msp300-PE/-PG的缺失阻碍Shot和Patronin定位于核表面,并破坏MT阵列、内体运输和核定位。此外,在Msp300-PE和-PG缺失后,尽管核定位和MT组织丧失,但其他Msp300异构体仍保留在核表面,这表明非Msp300-PE/-PG异构体不足以生成ncMTOC。Msp300-PE具有不寻常的结构域结构,包括缺乏KASH结构域且很少有血影蛋白重复序列,因此似乎获得了在核表面生成ncMTOC的功能。