Department of Microbiology and Immunology, Albert Einstein College of Medicine Bronx, Bronx, NY 10461, USA.
Retrovirology. 2012 Jun 12;9:49. doi: 10.1186/1742-4690-9-49.
SAMHD1 is a nuclear protein that blocks lentiviral infection before reverse transcription in macrophages and dendritic cells. The viral accessory protein Vpx overcomes the SAMHD1-mediated lentiviral block by inducing its proteasomal degradation.
Here, we identified the nuclear localization signal (NLS) of SAMHD1, and studied its contribution to restriction of HIV-1 and SIVmac. By studying the cellular distribution of different SAMHD1 variants, we mapped the nuclear localization of SAMHD1 to residues 11KRPR14. Mutagenesis of these residues changed the cellular distribution of SAMHD1 from the nucleus to the cytoplasm. SAMHD1 mutants that lost nuclear localization restricted HIV-1 and SIV as potently as the wild type protein. Interestingly, SAMHD1 mutants that localized to the cytoplasm were not degraded by nuclear Vpx alleles. Therefore, nuclear Vpx alleles require nuclear localization of SAMHD1 in order to induce its degradation. In agreement, SIVmac viruses encoding Vpx did not overcome the restriction imposed by the cytoplasmic variants of SAMHD1.
We mapped the NLS of SAMHD1 to residues 11KRPR14 and studied the contribution of SAMHD1 nuclear localization to restriction of HIV-1 and SIV. These experiments demonstrate that cytoplasmic variants of SAMHD1 potently block lentiviral infection and are resistant to Vpx-mediated degradation. The nuclear Vpx alleles studied here are only capable of degrading a nuclearly localized SAMHD1 suggesting that Vpx-mediated degradation of SAMHD1 is initiated in the nucleus.
SAMHD1 是一种核蛋白,可在巨噬细胞和树突状细胞中逆转录前阻止慢病毒感染。病毒辅助蛋白 Vpx 通过诱导其蛋白酶体降解来克服 SAMHD1 介导的慢病毒阻断。
在这里,我们确定了 SAMHD1 的核定位信号 (NLS),并研究了其对 HIV-1 和 SIVmac 限制的贡献。通过研究不同 SAMHD1 变体的细胞分布,我们将 SAMHD1 的核定位映射到 11KRPR14 残基。这些残基的突变改变了 SAMHD1 的细胞分布,从核内到细胞质。失去核定位的 SAMHD1 突变体对 HIV-1 和 SIV 的限制与野生型蛋白一样有效。有趣的是,定位于细胞质的 SAMHD1 突变体不会被核 Vpx 等位基因降解。因此,核 Vpx 等位基因需要 SAMHD1 的核定位才能诱导其降解。与预期一致,编码 Vpx 的 SIVmac 病毒不能克服由 SAMHD1 细胞质变体引起的限制。
我们将 SAMHD1 的 NLS 映射到 11KRPR14 残基,并研究了 SAMHD1 核定位对 HIV-1 和 SIV 限制的贡献。这些实验表明,SAMHD1 的细胞质变体强烈阻断慢病毒感染,并且对 Vpx 介导的降解具有抗性。研究中使用的核 Vpx 等位基因仅能够降解核定位的 SAMHD1,这表明 Vpx 介导的 SAMHD1 降解是在核内开始的。