Wang X, Kiledjian M, Weiss I M, Liebhaber S A
Howard Hughes Medical Institute, University of Pennsylvania School of Medicine, Philadelphia 19104-6145.
Mol Cell Biol. 1995 Mar;15(3):1769-77. doi: 10.1128/MCB.15.3.1769.
The highly stable nature of globin mRNA is of central importance to erythroid cell differentiation. We have previously identified cytidine-rich (C-rich) segments in the human alpha-globin mRNA 3' untranslated region (alpha-3'UTR) which are critical in the maintenance of mRNA stability in transfected erythroid cells. In the present studies, we have detected trans-acting factors which interact with these cis elements to mediate this stabilizing function. A sequence-specific ribonucleoprotein (RNP) complex is assembled after incubation of the alpha-3'UTR with a variety of cytosolic extracts. This so-called alpha-complex is sequence specific and is not formed on the 3'UTR of either beta-globin or growth hormone mRNAs. Furthermore, base substitutions within the C-rich stretches which destabilize alpha-globin mRNA in vivo result in a parallel disruption of the alpha-complex in vitro. Competition studies with a series of homoribopolymers reveals a striking sensitivity of alpha-complex formation to poly(C), suggesting the presence of a poly(C)-binding activity within the alpha-complex. Three predominant proteins are isolated by alpha-3'UTR affinity chromatography. One of these binds directly to poly(C). This cytosolic poly(C)-binding protein is distinct from previously described nuclear poly(C)-binding heterogeneous nuclear RNPs and is necessary but not sufficient for alpha-complex formation. These data suggest that a messenger RNP complex formed by interaction of defined segments within the alpha-3'UTR with a limited number of cytosolic proteins, including a potentially novel poly(C)-binding protein, is of functional importance in establishing high-level stability of alpha-globin mRNA.
珠蛋白mRNA的高度稳定性对红细胞系细胞分化至关重要。我们之前已在人α-珠蛋白mRNA 3'非翻译区(α-3'UTR)中鉴定出富含胞嘧啶(C-rich)的片段,这些片段对于转染的红细胞系细胞中mRNA稳定性的维持至关重要。在本研究中,我们检测到了与这些顺式元件相互作用以介导这种稳定功能的反式作用因子。将α-3'UTR与多种胞质提取物孵育后,会组装形成一种序列特异性核糖核蛋白(RNP)复合物。这种所谓的α-复合物具有序列特异性,在β-珠蛋白或生长激素mRNA的3'UTR上不会形成。此外,体内使α-珠蛋白mRNA不稳定的富含C的片段内的碱基替换,在体外会导致α-复合物的平行破坏。用一系列同聚核糖核苷酸进行的竞争研究表明,α-复合物的形成对聚(C)具有显著的敏感性,这表明α-复合物内存在一种聚(C)结合活性。通过α-3'UTR亲和层析分离出三种主要蛋白质。其中一种直接与聚(C)结合。这种胞质聚(C)结合蛋白不同于先前描述的核聚(C)结合异质性核核糖核蛋白,它对于α-复合物的形成是必要的,但并不充分。这些数据表明,由α-3'UTR内特定片段与有限数量的胞质蛋白(包括一种潜在的新型聚(C)结合蛋白)相互作用形成的信使核糖核蛋白复合物,在建立α-珠蛋白mRNA的高水平稳定性方面具有重要功能。