Reynisdóttir I, Bhattacharyya S, Zhang D, Prives C
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
J Virol. 1999 Apr;73(4):3004-13. doi: 10.1128/JVI.73.4.3004-3013.1999.
The retinoblastoma tumor suppressor protein (pRb) can associate with the transforming proteins of several DNA tumor viruses, including the large T antigen encoded by polyomavirus (Py T Ag). Although pRb function is critical for regulating progression from G1 to S phase, a role for pRb in S phase has not been demonstrated or excluded. To identify a potential effect of pRb on DNA replication, pRb protein was added to reaction mixtures containing Py T Ag, Py origin-containing DNA (Py ori-DNA), and murine FM3A cell extracts. We found that pRb strongly represses Py ori-DNA replication in vitro. Unexpectedly, however, this inhibition only partially depends on the interaction of pRb with Py T Ag, since a mutant Py T Ag (dl141) lacking the pRb interaction region was also significantly inhibited by pRb. This result suggests that pRb interferes with or alters one or more components of the murine cell replication extract. Furthermore, the ability of Py T Ag to be phosphorylated in such extracts is markedly reduced in the presence of pRb. Since cyclin-dependent kinase (CDK) phosphorylation of Py T Ag is required for its replication function, we hypothesize that pRb interferes with this phosphorylation event. Indeed, the S-phase CDK complex (cyclin A-CDK2), which phosphorylates both pRb and Py T Ag, alleviates inhibition caused by pRb. Moreover, hyperphosphorylated pRb is incapable of inhibiting replication of Py ori-DNA in vitro. We propose a new requirement for maintaining pRb phosphorylation in S phase, namely, to prevent deleterious effects on the cellular replication machinery.
视网膜母细胞瘤肿瘤抑制蛋白(pRb)可与多种DNA肿瘤病毒的转化蛋白相结合,包括多瘤病毒编码的大T抗原(Py T Ag)。尽管pRb功能对于调控从G1期到S期的进程至关重要,但pRb在S期的作用尚未得到证实或排除。为了确定pRb对DNA复制的潜在影响,将pRb蛋白添加到含有Py T Ag、含多瘤病毒起始位点的DNA(Py ori-DNA)和小鼠FM3A细胞提取物的反应混合物中。我们发现pRb在体外强烈抑制Py ori-DNA复制。然而,出乎意料的是,这种抑制仅部分依赖于pRb与Py T Ag的相互作用,因为缺乏pRb相互作用区域的突变型Py T Ag(dl141)也被pRb显著抑制。这一结果表明,pRb干扰或改变了小鼠细胞复制提取物中的一种或多种成分。此外,在pRb存在的情况下,Py T Ag在此类提取物中被磷酸化的能力明显降低。由于Py T Ag的细胞周期蛋白依赖性激酶(CDK)磷酸化是其复制功能所必需的,我们推测pRb干扰了这一磷酸化事件。事实上,可使pRb和Py T Ag都发生磷酸化的S期CDK复合物(细胞周期蛋白A-CDK2)可减轻pRb引起的抑制作用。此外,高度磷酸化的pRb在体外无法抑制Py ori-DNA的复制。我们提出了在S期维持pRb磷酸化的一个新要求,即防止对细胞复制机制产生有害影响。