Falciani Chiara, Lozzi Luisa, Pini Alessandro, Corti Federico, Fabbrini Monica, Bernini Andrea, Lelli Barbara, Niccolai Neri, Bracci Luisa
Chem Biol Drug Des. 2007 Mar;69(3):216-21. doi: 10.1111/j.1747-0285.2007.00487.x.
We found that synthetic peptides in the form of dendrimers become resistant to proteolysis. To determine the molecular basis of this resistance, different bioactive peptides were synthesized in monomeric, two-branched and tetra-branched form and incubated with human plasma and serum. Proteolytic resistance of branched multimeric sequences was compared to that of the same peptides synthesized as multimeric linear molecules. Unmodified peptides and cleaved sequences were detected by high pressure liquid chromatography and mass spectrometry. An increase in peptide copies did not increase peptide resistance in linear multimeric sequences, whereas multimericity progressively enhanced proteolytic stability of branched multimeric peptides. A structure-based hypothesis of branched peptide resistance to proteolysis by metallopeptidases is presented.
我们发现呈树枝状聚合物形式的合成肽对蛋白水解具有抗性。为了确定这种抗性的分子基础,以单体、双分支和四分支形式合成了不同的生物活性肽,并与人血浆和血清一起孵育。将分支多聚体序列的蛋白水解抗性与作为多聚体线性分子合成的相同肽的抗性进行比较。通过高压液相色谱和质谱检测未修饰的肽和裂解序列。肽拷贝数的增加并未增加线性多聚体序列中的肽抗性,而多聚性逐渐增强了分支多聚体肽的蛋白水解稳定性。本文提出了一种基于结构的分支肽对金属肽酶蛋白水解抗性的假说。