Gueth-Hallonet C, Wang J, Harborth J, Weber K, Osborn M
Department of Biochemistry, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, Goettingen, 37077, Germany.
Exp Cell Res. 1998 Sep 15;243(2):434-52. doi: 10.1006/excr.1998.4178.
Transient overexpression of nuclear mitotic apparatus protein (NuMA) in HeLa cells results in ordered lattices which can fill the nucleus and which are stable to detergent extraction. Electron microscopy reveals a quasi-hexagonal organization with an average spacing between the vertices of approximately 170 nm and short 6-nm-diameter rods connecting the vertices. Overexpression of a NuMA construct with an in-frame addition in the coiled-coil domain shows hexagons with the spacing increased by 42% while constructs with deletions in the coiled-coil domain yield hexagons with the spacing decreased by 40 and 19%. NuMA constructs truncated at residue 2005 or 2030 in the tail domain cause a drastic reorganization of nuclear components with relocation of the DNA, histone H1, and nucleoli to the nuclear rim. A construct lacking the head and much of the coiled-coil region also affects nuclear organization. In contrast, NuMA constructs truncated at residue 1950 or 1935 which lack the nuclear localization signal display normal nuclear structure but form cytoplasmic aggregates which also display hexagonal organization. Immunoelectron microscopy confirms that the nuclear lattices are built from NuMA. We discuss the importance of the different domains of NuMA for building the ordered in vivo lattices and whether NuMA could play a structural role in the architecture of the normal interphase nucleus.
核有丝分裂器蛋白(NuMA)在HeLa细胞中的瞬时过表达会导致形成有序晶格,这些晶格可充满细胞核且对去污剂提取具有稳定性。电子显微镜显示出一种准六边形结构,顶点之间的平均间距约为170 nm,并且有短的直径为6 nm的杆连接各顶点。在卷曲螺旋结构域中进行框内添加的NuMA构建体的过表达显示六边形间距增加了42%,而在卷曲螺旋结构域中存在缺失的构建体产生的六边形间距分别减少了40%和19%。在尾部结构域残基2005或2030处截断的NuMA构建体会导致核成分的剧烈重组,DNA、组蛋白H1和核仁重新定位到核边缘。一个缺少头部和大部分卷曲螺旋区域的构建体也会影响核组织。相比之下,在残基1950或1935处截断且缺乏核定位信号的NuMA构建体显示正常的核结构,但会形成也呈现六边形组织的细胞质聚集体。免疫电子显微镜证实核晶格由NuMA构成。我们讨论了NuMA不同结构域对于构建体内有序晶格的重要性,以及NuMA是否可能在正常间期核的结构中发挥结构作用。