Institut de Recherches Microbiologiques JM Wiame, Brussels, Belgium.
PLoS One. 2012;7(11):e50639. doi: 10.1371/journal.pone.0050639. Epub 2012 Nov 30.
Several aminopeptidases of the M42 family have been described as tetrahedral-shaped dodecameric (TET) aminopeptidases. A current hypothesis suggests that these enzymes are involved, along with the tricorn peptidase, in degrading peptides produced by the proteasome. Yet the M42 family remains ill defined, as some members have been annotated as cellulases because of their homology with CelM, formerly described as an endoglucanase of Clostridium thermocellum. Here we describe the catalytic functions and substrate profiles CelM and of TmPep1050, the latter having been annotated as an endoglucanase of Thermotoga maritima. Both enzymes were shown to catalyze hydrolysis of nonpolar aliphatic L-amino acid-pNA substrates, the L-leucine derivative appearing as the best substrate. No significant endoglucanase activity was measured, either for TmPep1050 or CelM. Addition of cobalt ions enhanced the activity of both enzymes significantly, while both the chelating agent EDTA and bestatin, a specific inhibitor of metalloaminopeptidases, proved inhibitory. Our results strongly suggest that one should avoid annotating members of the M42 aminopeptidase family as cellulases. In an updated assessment of the distribution of M42 aminopeptidases, we found TET aminopeptidases to be distributed widely amongst archaea and bacteria. We additionally observed that several phyla lack both TET and tricorn. This suggests that other complexes may act downstream from the proteasome.
几种 M42 家族的氨肽酶被描述为四面体十二聚体(TET)氨肽酶。目前的假设表明,这些酶与三齿蛋白酶一起参与降解蛋白酶体产生的肽。然而,M42 家族仍然定义不明确,因为一些成员被注释为纤维素酶,因为它们与 CelM 同源,CelM 以前被描述为热纤维梭菌的内切葡聚糖酶。在这里,我们描述了 CelM 和 TmPep1050 的催化功能和底物谱,后者被注释为海洋栖热菌的内切葡聚糖酶。两种酶都被证明可以催化非极性脂肪族 L-氨基酸-pNA 底物的水解,L-亮氨酸衍生物是最好的底物。无论是 TmPep1050 还是 CelM,都没有检测到明显的内切葡聚糖酶活性。添加钴离子显著增强了两种酶的活性,而螯合剂 EDTA 和贝司他汀(金属氨肽酶的特异性抑制剂)则被证明具有抑制作用。我们的结果强烈表明,不应将 M42 氨肽酶家族的成员注释为纤维素酶。在对 M42 氨肽酶家族的分布进行的最新评估中,我们发现 TET 氨肽酶广泛分布于古菌和细菌中。我们还观察到,几个门既没有 TET 也没有三齿。这表明其他复合物可能在蛋白酶体下游发挥作用。