Bordusa F, Jakubke H D
Department of Biochemistry, Faculty of Biosciences, Pharmacy and Psychology, Institute of Biochemistry, University of Leipzig, Germany.
Bioorg Med Chem. 1998 Oct;6(10):1775-80. doi: 10.1016/s0968-0896(98)00145-x.
The S1'-S3' subsite specificity of prolyl endopeptidase from Flavobacterium meningoseptum was studied by acyl transfer to libraries of amino acid amides and peptides. Whereas the S1' and S3' subsites influence the specificity for the amino component by approximately one order of magnitude, the S2' subsite possesses a markedly higher specificity. Besides the high specificity for hydrophobic residues at P1'-P3', proline was efficiently bound by the S2' and S3' subsites of the enzyme. In contrast, no binding of P1' proline-containing peptides was observed. It could be demonstrated that the specificity of the S' subsite is not restricted to L-amino acids. Effective P'-S' interactions were also found for beta- and gamma-amino acids indicating that the enzyme does not form close contacts to the backbone of P1' and P2' amino acid residues.
通过将酰基转移至氨基酸酰胺和肽库,研究了脑膜败血黄杆菌脯氨酰内肽酶的S1'-S3'亚位点特异性。虽然S1'和S3'亚位点对氨基酸成分特异性的影响约为一个数量级,但S2'亚位点具有明显更高的特异性。除了对P1'-P3'处疏水残基具有高特异性外,脯氨酸还能被该酶的S2'和S3'亚位点有效结合。相反,未观察到含P1'脯氨酸肽的结合。可以证明,S'亚位点的特异性不限于L-氨基酸。对于β-和γ-氨基酸也发现了有效的P'-S'相互作用,这表明该酶与P1'和P2'氨基酸残基的主链没有紧密接触。