Xie J, Briggs J A, Briggs R C
Department of Pathology, Vanderbilt University Medical School, Nashville, Tennessee 37232, USA.
J Cell Biochem. 1998 Sep 15;70(4):489-506.
The human myeloid nuclear differentiation antigen, MNDA, is expressed only in myelomonocytic and a subset of B lymphoid hematopoietic cells. MNDA is uniformly distributed throughout the interphase cell nucleus and associates with chromatin, but does not bind specific DNA sequences. We recently demonstrated that MNDA binds nucleolin and nucleophosmin/NPM/B23 and both of these nuclear proteins bind the ubiquitous zinc finger transcription factor YY1. Investigations of the possible effect of MNDA on the interaction between YY1 and NPM, showed that MNDA bound YY1 directly under both in vitro and in vivo conditions. The MNDA-YY1 interaction enhanced the affinity of YY1 for its target DNA and decreased its rate of dissociation. The N-terminal half (200 amino acids) of MNDA was sufficient for maximum enhancement of YY1 DNA binding and a portion of this sequence was responsible for binding YY1. MNDA participated in a ternary complex with YY1 and the YY1 target DNA element. The results show that MNDA affects the ability of YY1 to bind its target DNA sequnce and that MNDA participates in a ternary complex possibly acting as a cofactor to impart lineage specific features to YY1 function.
人类髓系核分化抗原MNDA仅在髓单核细胞和一部分B淋巴造血细胞中表达。MNDA在整个间期细胞核中均匀分布并与染色质相关联,但不结合特定的DNA序列。我们最近证明,MNDA结合核仁素和核磷蛋白/NPM/B23,并且这两种核蛋白都结合普遍存在的锌指转录因子YY1。对MNDA对YY1与NPM之间相互作用可能产生的影响的研究表明,在体外和体内条件下,MNDA都直接结合YY1。MNDA与YY1的相互作用增强了YY1对其靶DNA的亲和力并降低了其解离速率。MNDA的N端一半(200个氨基酸)足以最大程度地增强YY1与DNA的结合,并且该序列的一部分负责与YY1结合。MNDA与YY1和YY1靶DNA元件形成三元复合物。结果表明,MNDA影响YY1结合其靶DNA序列的能力,并且MNDA参与三元复合物,可能作为辅助因子赋予YY1功能以谱系特异性特征。