Alvarez David, Callejo Mario, Shoucri Rami, Boyer Lee, Price Gerald B, Zannis-Hadjopoulos Maria
McGill University Department of Biochemistry and McGill Cancer Center Montreal, Canada H3G 1Y6.
Biochemistry. 2003 Jun 17;42(23):7205-15. doi: 10.1021/bi027343p.
The human cruciform binding protein (CBP), a member of the 14-3-3 protein family, has been recently identified as an origin of DNA replication binding protein and involved in DNA replication. Here, pure recombinant 14-3-3zeta tagged with maltose binding protein (r14-3-3zeta-MBP) at its N-terminus was tested for binding to cruciform DNA either in the absence or presence of F(TH), a CBP-enriched fraction, by electromobility shift assay (EMSA), followed by Western blot analysis of the electroeluted CBP-cruciform DNA complex. The r14-3-3zeta-MBP was found to have cruciform binding activity only after preincubation with F(TH). Anti-MBP antibody immunoprecipitation of F(TH) preincubated with r14-3-3zeta-MBP, followed by Western blot analysis with antibodies specific to the beta, gamma, epsilon, zeta, and sigma 14-3-3 isoforms showed that r14-3-3zeta-MBP heterodimerized with the endogenous beta, epsilon, and zeta isoforms present in the F(TH) but not with the gamma or sigma isoforms. Immunoprecipitation of endogenous 14-3-3zeta from nuclear extracts (NE) of HeLa cells that were either serum-starved (s-s) or blocked at the G(1)/S or G(2)/M phases of the cell cycle revealed that at G(1)/S and G(2)/M, the zeta isoform heterodimerized only with the beta and epsilon isoforms, while in s-s extracts, the 14-3-3zeta/epsilon heterodimer was never detected, and the 14-3-3zeta/beta heterodimer was seldom detected. Furthermore, addition of r14-3-3zeta-MBP to HeLa cell extracts used in a mammalian in vitro replication system increased the replication level of p186, a plasmid bearing the minimal 186-bp origin of the monkey origin of DNA replication ors8, by approximately 3.5-fold. The data suggest that specific dimeric combinations of the 14-3-3 isoforms have CBP activity and that upregulation of this activity leads to an increase in DNA replication.
人十字形结合蛋白(CBP)是14-3-3蛋白家族的成员,最近被鉴定为DNA复制起始结合蛋白并参与DNA复制。在此,通过电泳迁移率变动分析(EMSA),检测了在其N端标记有麦芽糖结合蛋白(r14-3-3ζ-MBP)的纯重组14-3-3ζ在不存在或存在富含CBP的组分F(TH)的情况下与十字形DNA的结合,随后对电洗脱的CBP-十字形DNA复合物进行蛋白质印迹分析。发现r14-3-3ζ-MBP仅在与F(TH)预孵育后才具有十字形结合活性。用抗MBP抗体对与r14-3-3ζ-MBP预孵育的F(TH)进行免疫沉淀,随后用针对β、γ、ε、ζ和σ 14-3-3亚型的抗体进行蛋白质印迹分析,结果表明r14-3-3ζ-MBP与F(TH)中存在的内源性β、ε和ζ亚型形成异二聚体,但不与γ或σ亚型形成异二聚体。从处于血清饥饿(s-s)状态或在细胞周期的G(1)/S或G(2)/M期被阻断的HeLa细胞核提取物(NE)中免疫沉淀内源性14-3-3ζ,结果显示在G(1)/S和G(2)/M期,ζ亚型仅与β和ε亚型形成异二聚体,而在s-s提取物中,从未检测到14-3-3ζ/ε异二聚体,很少检测到14-3-3ζ/β异二聚体。此外,将r14-3-3ζ-MBP添加到用于哺乳动物体外复制系统的HeLa细胞提取物中,可使携带猴DNA复制起点ors8最小186 bp起点的质粒p186的复制水平提高约3.5倍。数据表明,14-3-3亚型的特定二聚体组合具有CBP活性,并且这种活性的上调导致DNA复制增加。