Wojnarowska F, Gray G M
Biochim Biophys Acta. 1975 Sep 22;403(1):147-60. doi: 10.1016/0005-2744(75)90018-2.
Peptide hydrolases were solubilized from rat small intestinal brush border by papain and separated by Sephadex G-200 chromatography, velocity gradient ultracentrifugation and polyacrylamide disc electrophoresis and designated according to approximate molecular size from sedimentation studies. Peptidases I (apparent Mr 230 000) and II (apparent Mr 160 000) are oligopeptidases with maximum specificity for tripeptides with identical pH optima (7.5) and similar apparent Km with L-Leu-Gly (I, 0.60 MM; II, 0.76 mM). L-Leucyl-beta-naphthylamide is a competitive inhibitor of both enzymes. Concentration of peptidase II produced partial conversion to peptidase I on polyacrylamide disc electrophoresis. The third peptide hydrolase (III, Mr 120 000) is a dipeptidase with pH optimum 8.5 and apparent Km for L-Leu-Gly of 0.65 mM. These peptide hydrolases were inhibited appreciably (37-59%) by 0.2 M glycine/NaOH, Tris - HCl or Tris - glycine buffers. EDTA (5 mM) completely inhibited these enzymes but all activity was restored by dialysis against buffer without divalent ions. Subsequent addition of Mg2+, Mn2+, Co2+ or Zn2+ (1-2 mM) inhibited peptidases I and II variably (4-81%) depending upon the substrate and buffer used. In contrast peptidase III was activated slightly by metal ions (5-20%). These peptide hydrolases are strategically located at the intestinal lumen-cell interface and possess biochemical characteristics making them ideally suited to play a pivotal role in the final stage of protein digestion.
肽水解酶通过木瓜蛋白酶从大鼠小肠刷状缘中溶解出来,并通过葡聚糖G - 200色谱法、速度梯度超速离心法和聚丙烯酰胺圆盘电泳法进行分离,并根据沉降研究中的近似分子大小进行命名。肽酶I(表观分子量230000)和肽酶II(表观分子量160000)是寡肽酶,对三肽具有最大特异性,具有相同的最适pH(7.5),并且对L - Leu - Gly的表观Km相似(I为0.60 mM;II为0.76 mM)。L - 亮氨酰 - β - 萘酰胺是这两种酶的竞争性抑制剂。在聚丙烯酰胺圆盘电泳上,肽酶II的浓度导致部分转化为肽酶I。第三种肽水解酶(III,分子量120000)是一种二肽酶,最适pH为8.5,对L - Leu - Gly的表观Km为0.65 mM。这些肽水解酶被0.2 M甘氨酸/氢氧化钠、Tris - HCl或Tris - 甘氨酸缓冲液显著抑制(37 - 59%)。EDTA(5 mM)完全抑制这些酶,但通过在无二价离子的缓冲液中透析可恢复所有活性。随后添加Mg2 +、Mn2 +、Co2 +或Zn2 +(1 - 2 mM)根据所用底物和缓冲液的不同,对肽酶I和II的抑制程度有所不同(4 - 81%)。相比之下,肽酶III被金属离子轻微激活(5 - 20%)。这些肽水解酶在肠道腔 - 细胞界面具有重要定位,并具有生化特性,使其非常适合在蛋白质消化的最后阶段发挥关键作用。