Goldberg M, Lu H, Stuurman N, Ashery-Padan R, Weiss A M, Yu J, Bhattacharyya D, Fisher P A, Gruenbaum Y, Wolfner M F
Department of Genetics, The Life Sciences Institute, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Mol Cell Biol. 1998 Jul;18(7):4315-23. doi: 10.1128/MCB.18.7.4315.
The nuclear envelope plays many roles, including organizing nuclear structure and regulating nuclear events. Molecular associations of nuclear envelope proteins may contribute to the implementation of these functions. Lamin, otefin, and YA are the three Drosophila nuclear envelope proteins known in early embryos. We used the yeast two-hybrid system to explore the interactions between pairs of these proteins. The ubiquitous major lamina protein, lamin Dm, interacts with both otefin, a peripheral protein of the inner nuclear membrane, and YA, an essential, developmentally regulated protein of the nuclear lamina. In agreement with this interaction, lamin and otefin can be coimmunoprecipitated from the vesicle fraction of Drosophila embryos and colocalize in nuclear envelopes of Drosophila larval salivary gland nuclei. The two-hybrid system was further used to map the domains of interaction among lamin, otefin, and YA. Lamin's rod domain interacts with the complete otefin protein, with otefin's hydrophilic NH2-terminal domain, and with two different fragments derived from this domain. Analogous probing of the interaction between lamin and YA showed that the lamin rod and tail plus part of its head domain are needed for interaction with full-length YA in the two-hybrid system. YA's COOH-terminal region is necessary and sufficient for interaction with lamin. Our results suggest that interactions with lamin might mediate or stabilize the localization of otefin and YA in the nuclear lamina. They also suggest that the need for both otefin and lamin in mediating association of vesicles with chromatin might reflect the function of a protein complex that includes these two proteins.
核膜发挥着多种作用,包括组织核结构和调节核内事件。核膜蛋白的分子关联可能有助于这些功能的实现。核纤层蛋白、外被蛋白和YA是早期胚胎中已知的三种果蝇核膜蛋白。我们利用酵母双杂交系统来探究这些蛋白两两之间的相互作用。普遍存在的主要核纤层蛋白,即核纤层蛋白Dm,与内膜外周蛋白外被蛋白以及核纤层中一种必需的、受发育调控的蛋白YA都相互作用。与这种相互作用一致,核纤层蛋白和外被蛋白可以从果蝇胚胎的囊泡部分共免疫沉淀出来,并在果蝇幼虫唾液腺细胞核的核膜中共定位。双杂交系统还被用于绘制核纤层蛋白、外被蛋白和YA之间的相互作用结构域。核纤层蛋白的杆状结构域与完整的外被蛋白、外被蛋白的亲水性NH2末端结构域以及源自该结构域的两个不同片段相互作用。对核纤层蛋白和YA之间相互作用的类似探究表明,在双杂交系统中,核纤层蛋白的杆状结构域、尾部以及部分头部结构域是与全长YA相互作用所必需的。YA的COOH末端区域对于与核纤层蛋白的相互作用是必要且充分的。我们的结果表明,与核纤层蛋白的相互作用可能介导或稳定外被蛋白和YA在核纤层中的定位。它们还表明,在介导囊泡与染色质的结合过程中对外被蛋白和核纤层蛋白的需求可能反映了包含这两种蛋白的蛋白质复合物的功能。