首页> 外文期刊>BMC Biochemistry >The major leucyl aminopeptidase of Trypanosoma cruzi (LAPTc) assembles into a homohexamer and belongs to the M17 family of metallopeptidases
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The major leucyl aminopeptidase of Trypanosoma cruzi (LAPTc) assembles into a homohexamer and belongs to the M17 family of metallopeptidases

机译:克氏锥虫(LAPTc)的主要亮氨酸氨基肽酶组装成同型六聚体,属于金属肽酶的M17家族

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Pathogens depend on peptidase activities to accomplish many physiological processes, including interaction with their hosts, highlighting parasitic peptidases as potential drug targets. In this study, a major leucyl aminopeptidolytic activity was identified in Trypanosoma cruzi, the aetiological agent of Chagas disease. The enzyme was isolated from epimastigote forms of the parasite by a two-step chromatographic procedure and associated with a single 330-kDa homohexameric protein as determined by sedimentation velocity and light scattering experiments. Peptide mass fingerprinting identified the enzyme as the predicted T. cruzi aminopeptidase EAN97960. Molecular and enzymatic analysis indicated that this leucyl aminopeptidase of T. cruzi (LAPTc) belongs to the peptidase family M17 or leucyl aminopeptidase family. LAPTc has a strong dependence on neutral pH, is mesophilic and retains its oligomeric form up to 80°C. Conversely, its recombinant form is thermophilic and requires alkaline pH. LAPTc is a 330-kDa homohexameric metalloaminopeptidase expressed by all T. cruzi forms and mediates the major parasite leucyl aminopeptidolytic activity. Since biosynthetic pathways for essential amino acids, including leucine, are lacking in T. cruzi, LAPTc could have a function in nutritional supply.
机译:病原体依靠肽酶的活性来完成许多生理过程,包括与宿主的相互作用,从而突出了寄生肽酶作为潜在的药物靶标。在这项研究中,在南美锥虫病的病原体克氏锥虫中鉴定出主要的亮氨酰氨肽酶分解活性。通过两步色谱法从副鞭毛体形式的寄生虫中分离出该酶,并通过沉降速度和光散射实验确定该酶与单个330kDa同六聚体蛋白质相关。肽质量指纹图谱将该酶鉴定为预测的克鲁斯克鲁维酵母氨基肽酶EAN97960。分子和酶学分析表明该克鲁维丝酵母的亮氨酰肽酶(LAPTc)属于肽酶家族M17或亮氨酰肽酶家族。 LAPTc对中性pH有很强的依赖性,具有嗜温性,在80°C时仍可保持其低聚物形式。相反,其重组形式是嗜热的,需要碱性pH。 LAPTc是一种330 kDa的同六聚体金属氨基肽酶,可以通过所有克鲁氏梭菌形式表达,并介导主要的寄生虫亮氨酰氨肽酶分解活性。由于克氏锥虫缺乏必需氨基酸(包括亮氨酸)的生物合成途径,因此LAPTc可能在营养供应中发挥作用。

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