Hu W, Jans D A
Nuclear Signalling Laboratory, Division for Biochemistry and Molecular Biology, John Curtin School of Medical Research, Canberra, ACT 2601, Australia.
J Biol Chem. 1999 May 28;274(22):15820-7. doi: 10.1074/jbc.274.22.15820.
Little quantitative, kinetic information is available with respect to the process of nuclear import of conventional nuclear localization sequence (NLS)-containing proteins, which initially involves recognition and docking at the nuclear pore by importin alpha/beta. This study compares the binding and nuclear import properties of mouse (m) and yeast (y) importin (IMP) subunits with respect to the NLSs from the SV40 large tumor antigen (T-ag), and the Xenopus laevis phosphoprotein N1N2. m- and y-IMPalpha recognized both NLSs, with y-IMPalpha exhibiting higher affinity. m-IMPbeta greatly enhanced the binding of m-IMPalpha to the T-ag and N1N2 NLSs, but y-IMPbeta did not significantly affect the affinity of y-IMPalpha for the T-ag NLS. In contrast, y-IMPbeta enhanced y-IMPalpha binding to the NLS of N1N2, but to a lesser extent than the enhancement of m-IMPalpha binding by m-IMPbeta. NLS-dependent nuclear import was reconstituted in vitro using the different importin subunits together with the transport factors Ran and NTF2. Whereas T-ag NLS-mediated nuclear import did not exhibit an absolute requirement for NTF2, N1N2 NLS-mediated transport strictly required NTF2. High levels of NTF2 inhibited nuclear accumulation conferred by both NLSs. We conclude that different NLSs possess distinct nuclear import properties due to differences in recognition by importin and requirements for NTF2.
关于含有传统核定位序列(NLS)的蛋白质的核输入过程,目前可获得的定量动力学信息很少,该过程最初涉及输入蛋白α/β在核孔处的识别和对接。本研究比较了小鼠(m)和酵母(y)输入蛋白(IMP)亚基对来自SV40大T抗原(T-ag)和非洲爪蟾磷蛋白N1N2的NLS的结合和核输入特性。m-IMPα和y-IMPα都能识别这两种NLS,其中y-IMPα表现出更高的亲和力。m-IMPβ极大地增强了m-IMPα与T-ag和N1N2 NLS的结合,但y-IMPβ对y-IMPα与T-ag NLS的亲和力没有显著影响。相反,y-IMPβ增强了y-IMPα与N1N2 NLS的结合,但增强程度小于m-IMPβ对m-IMPα结合的增强程度。使用不同的输入蛋白亚基以及转运因子Ran和NTF2在体外重建了NLS依赖性核输入。虽然T-ag NLS介导的核输入对NTF2没有绝对要求,但N1N2 NLS介导的转运严格需要NTF2。高水平的NTF2抑制了两种NLS赋予的核积累。我们得出结论,由于输入蛋白识别的差异和对NTF2的需求不同,不同的NLS具有不同的核输入特性。