Sorin Masha, Cano Jennifer, Das Supratik, Mathew Sheeba, Wu Xuhong, Davies Kelvin P, Shi Xuanling, Cheng S-W Grace, Ott David, Kalpana Ganjam V
Department of Genetics, Albert Einstein College of Medicine, Bronx, New York, United States of America.
PLoS Pathog. 2009 Jun;5(6):e1000463. doi: 10.1371/journal.ppat.1000463. Epub 2009 Jun 5.
HIV-1 integrase (IN) is a virally encoded protein required for integration of viral cDNA into host chromosomes. INI1/hSNF5 is a component of the SWI/SNF complex that interacts with HIV-1 IN, is selectively incorporated into HIV-1 (but not other retroviral) virions, and modulates multiple steps, including particle production and infectivity. To gain further insight into the role of INI1 in HIV-1 replication, we screened for INI1-interacting proteins using the yeast two-hybrid system. We found that SAP18 (Sin3a associated protein 18 kD), a component of the Sin3a-HDAC1 complex, directly binds to INI1 in yeast, in vitro and in vivo. Interestingly, we found that IN also binds to SAP18 in vitro and in vivo. SAP18 and components of a Sin3A-HDAC1 complex were specifically incorporated into HIV-1 (but not SIV and HTLV-1) virions in an HIV-1 IN-dependent manner. Using a fluorescence-based assay, we found that HIV-1 (but not SIV) virion preparations harbour significant deacetylase activity, indicating the specific recruitment of catalytically active HDAC into the virions. To determine the requirement of virion-associated HDAC1 to HIV-1 replication, an inactive, transdominant negative mutant of HDAC1 (HDAC1(H141A)) was utilized. Incorporation of HDAC1(H141A) decreased the virion-associated histone deacetylase activity. Furthermore, incorporation of HDAC1(H141A) decreased the infectivity of HIV-1 (but not SIV) virions. The block in infectivity due to virion-associated HDAC1(H141A) occurred specifically at the early reverse transcription stage, while entry of the virions was unaffected. RNA-interference mediated knock-down of HDAC1 in producer cells resulted in decreased virion-associated HDAC1 activity and a reduction in infectivity of these virions. These studies indicate that HIV-1 IN and INI1/hSNF5 bind SAP18 and selectively recruit components of Sin3a-HDAC1 complex into HIV-1 virions. Furthermore, HIV-1 virion-associated HDAC1 is required for efficient early post-entry events, indicating a novel role for HDAC1 during HIV-1 replication.
HIV-1整合酶(IN)是一种病毒编码蛋白,它是病毒cDNA整合到宿主染色体中所必需的。INI1/hSNF5是SWI/SNF复合物的一个组成部分,可与HIV-1 IN相互作用,被选择性地整合到HIV-1(而非其他逆转录病毒)病毒粒子中,并调节包括病毒粒子产生和感染性在内的多个步骤。为了进一步深入了解INI1在HIV-1复制中的作用,我们使用酵母双杂交系统筛选了与INI1相互作用的蛋白。我们发现,Sin3a-HDAC1复合物的一个组成部分SAP18(Sin3a相关蛋白18 kD)在酵母中、体外和体内均直接与INI1结合。有趣的是,我们还发现IN在体外和体内也与SAP18结合。SAP18和Sin3A-HDAC1复合物的组成部分以HIV-1 IN依赖的方式被特异性地整合到HIV-1(而非SIV和HTLV-1)病毒粒子中。使用基于荧光的检测方法,我们发现HIV-1(而非SIV)病毒粒子制剂具有显著的去乙酰化酶活性,这表明催化活性HDAC被特异性招募到病毒粒子中。为了确定病毒粒子相关的HDAC1对HIV-1复制的需求,我们使用了HDAC1的无活性、反式显性负突变体(HDAC1(H141A))。HDAC1(H141A)的整合降低了病毒粒子相关的组蛋白去乙酰化酶活性。此外,HDAC1(H141A)的整合降低了HIV-1(而非SIV)病毒粒子的感染性。由于病毒粒子相关的HDAC1(H141A)导致的感染性阻断特异性地发生在早期逆转录阶段,而病毒粒子的进入不受影响。在生产细胞中,RNA干扰介导的HDAC1敲低导致病毒粒子相关的HDAC1活性降低以及这些病毒粒子感染性的降低。这些研究表明,HIV-1 IN和INI1/hSNF5结合SAP18,并将Sin3a-HDAC1复合物的组成部分选择性地招募到HIV-1病毒粒子中。此外,HIV-1病毒粒子相关的HDAC1是高效的进入后早期事件所必需的,这表明HDAC1在HIV-1复制过程中具有新的作用。