Department of Biochemistry, Groningen Biomolecular Sciences and Biotechnology Institute, Netherlands Proteomics Centre, Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.
Traffic. 2013 May;14(5):487-501. doi: 10.1111/tra.12048. Epub 2013 Feb 21.
Nuclear transport of the Saccharomyces cerevisiae membrane proteins Src1/Heh1 and Heh2 across the NPC is facilitated by a long intrinsically disordered linker between the nuclear localization signal (NLS) and the transmembrane domain. The import of reporter proteins derived from Heh2 is dependent on the FG-Nups in the central channel, and the linker can position the transport factor-bound NLS in the vicinity of the FG-Nups in the central channel, while the transmembrane segment resides in the pore membrane. Here, we present a quantitative analysis of karyopherin-mediated import and passive efflux of reporter proteins derived from Heh2, including data on the mobility of the reporter proteins in different membrane compartments. We show that membrane proteins with extralumenal domains up to 174 kDa, terminal to the linker and NLS, passively leak out of the nucleus via the NPC, albeit at a slow rate. We propose that also during passive efflux, the unfolded linker facilitates the passage of extralumenal domains through the central channel of the NPC.
酿酒酵母的膜蛋白 Src1/Heh1 和 Heh2 通过核孔复合体(NPC)的核转运是由核定位信号(NLS)和跨膜结构域之间的长的固有无序连接子介导的。源自 Heh2 的报告蛋白的导入依赖于中央通道中的 FG-Nups,连接子可以将运输因子结合的 NLS 定位在中央通道中 FG-Nups 的附近,而跨膜片段则位于孔膜中。在这里,我们对源自 Heh2 的报告蛋白的核孔蛋白介导的输入和被动流出进行了定量分析,包括有关报告蛋白在不同膜隔室中的迁移率的数据。我们表明,NLS 连接子末端的、具有长达 174kDa 的胞外结构域的膜蛋白可通过 NPC 被动漏出核内,但速度较慢。我们提出,在被动流出过程中,未折叠的连接子也有助于胞外结构域通过 NPC 的中央通道。