Bertinato J, Schild-Poulter C, Haché R J
Graduate Program in Biochemistry, Department of Medicine, University of Ottawa, Ontario, Canada, K1Y 4K9.
J Cell Sci. 2001 Jan;114(Pt 1):89-99. doi: 10.1242/jcs.114.1.89.
The Ku antigen is a heteromeric (Ku70/Ku80), mostly nuclear protein. Ku participates in multiple nuclear processes from DNA repair to V(D)J recombination to telomere maintenance to transcriptional regulation and serves as a DNA binding subunit and allosteric regulator of DNA-dependent protein kinase. While some evidence suggests that subcellular localization of Ku may be subject to regulation, how Ku gains access to the nucleus is poorly understood. In this work, using a combination of indirect immunofluorescence and direct fluorescence, we have demonstrated that transfer of the Ku heterodimer to the nucleus is determined by basic nuclear localization signals in each of the Ku subunits that function independently. A bipartite basic nuclear localization signal between amino acids 539-556 of Ku70 was observed to be required for nuclear import of full-length Ku70 monomer, while a short Ku80 motif of four amino acids from 565-568 containing three lysines was required for the nuclear import of full-length Ku80. Ku heterodimers containing only one nuclear localization signal accumulated in the nucleus as efficiently as wild-type Ku, while site directed mutagenesis inactivating the basic motifs in each subunit, resulted in a Ku heterodimer that was completely localized to the cytoplasm. Lastly, our results indicate that mutations in Ku previously proposed to abrogate Ku70/Ku80 heterodimerization, markedly reduced the accumulation of Ku70 without affecting heterodimer formation in mammalian cells.
Ku抗原是一种异源二聚体(Ku70/Ku80),主要为核蛋白。Ku参与从DNA修复到V(D)J重组、端粒维持及转录调控等多个核过程,并作为DNA依赖性蛋白激酶的DNA结合亚基和变构调节因子。虽然一些证据表明Ku的亚细胞定位可能受调控,但对Ku如何进入细胞核却知之甚少。在这项研究中,我们结合间接免疫荧光和直接荧光技术,证明了Ku异源二聚体向细胞核的转运是由每个Ku亚基中独立发挥作用的碱性核定位信号决定的。观察到Ku70氨基酸539 - 556之间的双分型碱性核定位信号是全长Ku70单体核输入所必需的,而全长Ku80的核输入则需要Ku80中565 - 568位含三个赖氨酸的四个氨基酸的短基序。仅含一个核定位信号的Ku异源二聚体在细胞核中的积累效率与野生型Ku一样高,而在每个亚基中使碱性基序失活的定点诱变导致Ku异源二聚体完全定位于细胞质中。最后,我们的结果表明,先前提出的消除Ku70/Ku80异源二聚化的Ku突变,在哺乳动物细胞中显著降低了Ku70的积累,而不影响异源二聚体的形成。