Oizumi J, Hayakawa K
National Children's Medical Research Center, Division of Metabolism, Tokyo, Japan.
Biochem J. 1990 Oct 1;271(1):45-9. doi: 10.1042/bj2710045.
The substrate specificity of lipoamidase, purified from the pig brain membrane with lipoyl 4-aminobenzoate (LPAB) as a substrate, was extensively studied. This single polypeptide was found to hydrolyse the bonding between amide, ester and peptide compounds. However, stringent structural requirements were found in the substrates, e.g. LPAB was hydrolysed, whereas biotinyl 4-aminobenzoate was not, as stated in our previous paper [Oizmui & Hayakawa (1990) Biochem. J. 266, 427-434]. The enzyme specifically recognized the whole molecular structure of the substrate, whereas it loosely recognized the bond structure of the substrate; e.g. the dipeptide Asp-Phe was not hydrolysed, whereas the methyl ester of Asp-Phe (aspartame) was. The exopeptidase activity was demonstrated by lipoamidase; however, longer peptides than the hexamer seemed not to be substrates. Lipoyl esters, which were electrically neutral, exhibited higher specificity with longer acyl groups. Molecular mass and molecular hydrophobicity (hydropathy) seemed to determine the substrate specificity. Lipoyl-lysine, acetylcholine and oligopeptides were hydrolysed at similar Km values; however, acetylcholine was hydrolysed at a velocity 100 times higher. Although many similar specificities were found between electric eel acetylcholinesterase and lipoamidase, distinctly different specificity was demonstrated with lipoyl compounds. The role of lipoamidase, which resides on the brain membrane and possesses higher specificity for hydrophobic molecules, remains to be elucidated.
以硫辛酸 4-氨基苯甲酸酯(LPAB)为底物,从猪脑膜中纯化得到脂酰胺酶,并对其底物特异性进行了广泛研究。发现这种单一多肽能够水解酰胺、酯和肽类化合物之间的键。然而,在底物中发现了严格的结构要求,例如,如我们之前的论文所述[Oizmui & Hayakawa (1990) Biochem. J. 266, 427 - 434],LPAB 可被水解,而生物素 4-氨基苯甲酸酯则不能。该酶特异性地识别底物的整个分子结构,而对底物的键结构识别较宽松;例如,二肽 Asp-Phe 不被水解,而 Asp-Phe 的甲酯(阿斯巴甜)则可被水解。脂酰胺酶表现出外肽酶活性;然而,比六聚体更长的肽似乎不是底物。电中性的硫辛酸酯对较长的酰基表现出更高的特异性。分子量和分子疏水性(亲水性)似乎决定了底物特异性。硫辛酰赖氨酸、乙酰胆碱和寡肽在相似的 Km 值下被水解;然而,乙酰胆碱的水解速度要高 100 倍。尽管在电鳗乙酰胆碱酯酶和脂酰胺酶之间发现了许多相似的特异性,但在硫辛酸化合物方面表现出明显不同的特异性。位于脑膜上且对疏水分子具有较高特异性的脂酰胺酶的作用仍有待阐明。