Wei Guo, Schaffner Alicia Erbe, Baker Kimberly M, Mansky Kim C, Ostrowski Michael C
Department of Molecular Genetics, Comprehensive Cancer Center, Ohio State University, 484 W. 12th Ave., Columbus, OH 43210, USA.
Anticancer Res. 2003 May-Jun;23(3A):2173-8.
The ETS-family of proteins consists of over 30 members that regulate the growth, differentiation and survival of both normal and tumor cells. How specificity is achieved within this family remains largely unresolved. One mechanism for attaining specificity is through the action of signaling pathways on specific family members. For example, Ets-2 is an activator modulated by ras-dependent phosphorylation of a single residue in the conserved pointed domain of this factor. We hypothesized that phosphorylation of the pointed domain regulates the proteins that can interact with ets-2 in the cell nucleus, resulting in regulation of target genes.
We used a combination of biochemical assays, yeast two-hybrid screens and transfection assays to identify and characterize proteins interacting with the pointed domain.
BS69, a known co-repressor, was identified in a yeast two hybrid screen as an ets-2 interacting partner. BS69 can interact with ets-2 in vivo and phosphorylation of the ets-2 pointed domain decreased the interaction with BS69 in vitro. In transfection assays, co-expression of ets-2 and BS69 resulted in repression of defined ets-2 target genes.
These results support a role for ets-2 as a repressor and indicate that BS69 is required as co-repressor. Phosphorylation of ets-2 may switch its activity from repressor to activator by interfering with formation of the BS69 complex.
ETS 蛋白家族由 30 多个成员组成,这些成员调节正常细胞和肿瘤细胞的生长、分化及存活。该家族如何实现特异性在很大程度上仍未得到解决。实现特异性的一种机制是通过信号通路对特定家族成员的作用。例如,Ets-2 是一种激活剂,通过该因子保守的尖状结构域中单个残基的 ras 依赖性磷酸化进行调节。我们推测尖状结构域的磷酸化调节了能够在细胞核中与 ets-2 相互作用的蛋白质,从而导致对靶基因的调控。
我们结合生化分析、酵母双杂交筛选和转染分析来鉴定和表征与尖状结构域相互作用的蛋白质。
已知的共抑制因子 BS69 在酵母双杂交筛选中被鉴定为 ets-2 的相互作用伴侣。BS69 可在体内与 ets-2 相互作用,并且 ets-2 尖状结构域的磷酸化在体外降低了与 BS69 的相互作用。在转染分析中,ets-2 和 BS69 的共表达导致特定 ets-2 靶基因的抑制。
这些结果支持 ets-2 作为抑制因子的作用,并表明 BS69 作为共抑制因子是必需的。ets-2 的磷酸化可能通过干扰 BS69 复合物的形成将其活性从抑制因子转变为激活剂。