采用反相高效液相色谱(RP-HPLC)与质谱(MS)联用技术对固相法化学合成七肽(H2N-PFNSLAI-COOH,M r 760.9)时出现的消旋产物进行了分析。根据弱疏水性合成七肽粗品特性,提出了充分利用吸附和分配双重保留机制的“早期吸附”概念,以此优化...采用反相高效液相色谱(RP-HPLC)与质谱(MS)联用技术对固相法化学合成七肽(H2N-PFNSLAI-COOH,M r 760.9)时出现的消旋产物进行了分析。根据弱疏水性合成七肽粗品特性,提出了充分利用吸附和分配双重保留机制的“早期吸附”概念,以此优化色谱条件得到4个峰形良好的色谱峰;质谱分析表明:4谱峰具有相同的m/z761.5[M+H]+值,对每一消旋产物进行在线多肽测序,并利用串联质谱(MSn)谱图叠加的方法,得到b轴和y轴两套片段信息,成功确定了合成七肽的4个消旋产物。展开更多
A new method for the rapid and efficient screening of affinity ligands to biological targets is reported. The fusion peptide of influenza virus A was used as the model target and immobilized on the PGMA beads. Antisen...A new method for the rapid and efficient screening of affinity ligands to biological targets is reported. The fusion peptide of influenza virus A was used as the model target and immobilized on the PGMA beads. Antisense peptide YRSKQA of fusion peptide was chosen as the lead compound. The special positional scanning peptide libraries were designed based on YRSKQA and synthesized by utilizing solid phase peptide synthesis manually. The libraries were YRSKQX, YRSKXA, YRSXQA, YRXKQA, YXSKQA and XRSKQA, where X represented 18 L-amino acids(except for Cys and Trp). Each library was screened by affinity chromatography. The eluates from the fusion peptide affinity column were collected and analyzed by RP-HPLC and MS, respectively, in order to determine the kind of X at each position. After the preferred residues of six positions were decided, the two preferred peptide sequences, GRGKHK and TRGKHK, were obtained. The dissociation constants of GRGKHK, TRGKHK and YRSKQA, were 3.35×10 -6, 5.24×10 -6 and 1.15×10 -5 mol·L -1, respectively. The preferred peptides showed the higher affinity binding to immobilized fusion peptide than the lead peptide.展开更多
文摘采用反相高效液相色谱(RP-HPLC)与质谱(MS)联用技术对固相法化学合成七肽(H2N-PFNSLAI-COOH,M r 760.9)时出现的消旋产物进行了分析。根据弱疏水性合成七肽粗品特性,提出了充分利用吸附和分配双重保留机制的“早期吸附”概念,以此优化色谱条件得到4个峰形良好的色谱峰;质谱分析表明:4谱峰具有相同的m/z761.5[M+H]+值,对每一消旋产物进行在线多肽测序,并利用串联质谱(MSn)谱图叠加的方法,得到b轴和y轴两套片段信息,成功确定了合成七肽的4个消旋产物。
文摘A new method for the rapid and efficient screening of affinity ligands to biological targets is reported. The fusion peptide of influenza virus A was used as the model target and immobilized on the PGMA beads. Antisense peptide YRSKQA of fusion peptide was chosen as the lead compound. The special positional scanning peptide libraries were designed based on YRSKQA and synthesized by utilizing solid phase peptide synthesis manually. The libraries were YRSKQX, YRSKXA, YRSXQA, YRXKQA, YXSKQA and XRSKQA, where X represented 18 L-amino acids(except for Cys and Trp). Each library was screened by affinity chromatography. The eluates from the fusion peptide affinity column were collected and analyzed by RP-HPLC and MS, respectively, in order to determine the kind of X at each position. After the preferred residues of six positions were decided, the two preferred peptide sequences, GRGKHK and TRGKHK, were obtained. The dissociation constants of GRGKHK, TRGKHK and YRSKQA, were 3.35×10 -6, 5.24×10 -6 and 1.15×10 -5 mol·L -1, respectively. The preferred peptides showed the higher affinity binding to immobilized fusion peptide than the lead peptide.