Bothwell A L, Ballard D W, Philbrick W M, Lindwall G, Maher S E, Bridgett M M, Jamison S F, Garcia-Blanco M A
Section of Immunobiology, Yale University School of Medicine, New Haven, Connecticut 06510.
J Biol Chem. 1991 Dec 25;266(36):24657-63.
A complex of nucleic acid binding proteins (100, 35, and 25 kDa) was purified to apparent homogeneity from nuclear extracts of the murine plasmacytoma J558L. Amino-terminal sequence analysis of the 25-kDa subunit enabled the isolation of a cDNA that encodes a 528-amino acid protein that is highly homologous to the human 62-kDa human polypyrimidine tract binding protein (PTB) (Garcia-Blanco, M. A., Jamison, S. F., and Sharp, P. A. (1989) Genes & Dev. 3, 1874-1886; Gil, A., Sharp, P. A., Jamison, S. F., and Garcia-Blanco, M. A. (1991) Genes & Dev. 5, 1224-1236; Patton, J. G., Mayer, S. A., Tempst, P., and Nadal-Ginard, B. (1991) Genes & Dev. 5, 1237-1251). Sequence comparison programs suggested the presence of domains related to the RNA recognition motif found in other RNA-binding proteins, and deletion analysis revealed that the carboxyl-terminal 195 amino acids of the recombinant PTB was sufficient for specific binding to pre-mRNAs. Cross-linking experiments identified a 25-kDa protein in crude nuclear extracts of J558L cells that possessed the RNA binding properties of PTB, while a approximately 60-kDa protein is detected in other murine cell lines tested. Thus, the 25-kDa protein found in J558L is likely a proteolytic product of the murine polypyrimidine tract binding protein. A probe derived from the PTB cDNA detected a ubiquitous 3.3-kb mRNA in murine cell lines and a 3.6-kb mRNA in human lines. Southern blot analysis revealed three strongly hybridizing DNA fragments and several more weakly hybridizing bands in mouse, human, and yeast DNA. The role of PTB in pre-mRNA splicing is discussed.
从鼠浆细胞瘤J558L的核提取物中纯化出一种核酸结合蛋白复合物(100 kDa、35 kDa和25 kDa),纯度达到表观均一。对25 kDa亚基进行氨基末端序列分析后,分离出一个cDNA,它编码一种528个氨基酸的蛋白质,与人62 kDa的多嘧啶序列结合蛋白(PTB)高度同源(加西亚 - 布兰科,M. A.,贾米森,S. F.,和夏普,P. A.(1989年)《基因与发育》3,1874 - 1886;吉尔,A.,夏普,P. A.,贾米森,S. F.,和加西亚 - 布兰科,M. A.(1991年)《基因与发育》5,1224 - 1236;巴顿,J. G.,梅耶,S. A.,滕普斯特,P.,和纳达尔 - 吉纳尔,B.(1991年)《基因与发育》5,1237 - 1251)。序列比较程序表明存在与其他RNA结合蛋白中发现的RNA识别基序相关的结构域,缺失分析显示重组PTB的羧基末端195个氨基酸足以与前体mRNA特异性结合。交联实验在J558L细胞的粗核提取物中鉴定出一种具有PTB RNA结合特性的25 kDa蛋白,而在其他测试的鼠细胞系中检测到一种约60 kDa的蛋白。因此,J558L中发现的25 kDa蛋白可能是鼠多嘧啶序列结合蛋白的蛋白水解产物。源自PTB cDNA的探针在鼠细胞系中检测到一种普遍存在的3.3 kb mRNA,在人细胞系中检测到一种3.6 kb mRNA。Southern印迹分析在小鼠、人类和酵母DNA中显示出三个强杂交的DNA片段以及几个较弱杂交的条带。文中讨论了PTB在前体mRNA剪接中的作用。