Fassina G, Roller P P, Olson A D, Thorgeirsson S S, Omichinski J G
Laboratory of Experimental Carcinogenesis, National Cancer Institute, Bethesda, Maryland 20892.
J Biol Chem. 1989 Jul 5;264(19):11252-7.
Two peptides with hydropathic complementarity to residues 356-375 of the c-raf protein were synthesized to determine if they recognize the raf-(356-375) peptide as well as the entire protein. One peptide was deduced from the complementary mRNA for the raf protein corresponding to residues 356-375, whereas the other was deduced solely from the amino acid sequence of the 20-mer segment using a computer program able to generate peptide sequences with hydropathic complementarity to a given sequence. Specific binding of both peptides to the raf 20-mer segment was demonstrated when either the raf 20-mer peptide or the complementary peptides were immobilized on a column. Binding affinities were in the millimolar-micromolar range. Identical binding properties were observed with peptides synthesized with either all D- or all L-amino acids, suggesting a lack of conformational dependence. Binding was also unaffected by the presence of 8 M urea or detergents, was dependent on solvent characteristics of pH and ionic strength, and was abolished by the presence of competing peptides in the eluting buffer. Recognition between raf complementary peptides was accompanied by spectral changes in the far and near UV region, as monitored by circular dichroism. Proteolytic degradation was retarded by the binding of these peptides. Once immobilized on a column, these peptides proved useful for the isolation by affinity chromatography of a recombinant c-raf protein from an Escherichia coli crude cell extract.
合成了两种与c-raf蛋白356 - 375位残基具有亲水性互补性的肽,以确定它们是否能识别raf-(356 - 375)肽以及整个蛋白。一种肽是从与raf蛋白356 - 375位残基对应的互补mRNA推导而来,而另一种则仅使用一个能够生成与给定序列具有亲水性互补性的肽序列的计算机程序,从20聚体片段的氨基酸序列推导而来。当raf 20聚体肽或互补肽固定在柱上时,证明了这两种肽与raf 20聚体片段的特异性结合。结合亲和力在毫摩尔 - 微摩尔范围内。用全D型或全L型氨基酸合成的肽观察到相同的结合特性,表明缺乏构象依赖性。结合也不受8M尿素或去污剂存在的影响,取决于pH和离子强度的溶剂特性,并且在洗脱缓冲液中存在竞争性肽时被消除。通过圆二色性监测,raf互补肽之间的识别伴随着远紫外和近紫外区域的光谱变化。这些肽的结合延缓了蛋白水解降解。一旦固定在柱上,这些肽被证明可用于通过亲和色谱从大肠杆菌粗细胞提取物中分离重组c-raf蛋白。