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Features of the transglutaminase-activating metalloprotease from Streptomyces mobaraensis DSM 40847 produced in Escherichia coli

机译:从大肠杆菌生产的中霉菌酵母菌(Streptomyces Mobaraensis DSM 40847)的转氨酰胺酶 - 活化金属蛋白酶的特征

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Transglutaminase from Streptomyces mobaraensis (MTG) is an important enzyme for numerous industrial applications. Recombinant production requires proteolytic activation of the zymogen. The study provides a convenient procedure for the preparation of the transglutaminase-activating metalloprotease (TAMP) in Escherichia coli. In contrast to wtTAMP, rTAMP exhibited the P domain of convertases as molecular mass of 55.7 kDa suggested. Protein integrity was beneficially influenced by 2-5mM CaCl2. Study of pH and temperature optima assigned rTAMP to the neutral metalloproteases, more heat-resistant than Dispase but not thermolysin. Zinc had no inhibiting effect but 3.1 mu M EDTA completely reduced activity of 5 nM TAMP. MTG, exceeding concentration of rTAMP by three orders of magnitude, was largely activated within few minutes. The kinetic parameters K-M (1.31 +/- 0.05 mM) and k(cat) (135 +/- 4.3 s(-1)), monitored by isothermal titration calorimetry (ITC), further highlighted catalytic efficiency (103,053 M-1 s(-1)) of rTAMP and rapid processing of MTG. ITC even revealed that inhibition of rTAMP by its intrinsic inhibitory protein SSTI was an enthalpy-driven process resulting in K-d of 199 +/- 37.9 nM. The production procedure of rTAMP in E. coli closes the gap between production and application of recombinant MTG and may enhance relevance of MTG-mediated reactions in pharmaceutical processes.
机译:来自链霉菌(Mobaraensis)的转谷氨酰胺酶(MTG)是许多工业应用的重要酶。重组生产需要酶原的蛋白水解活化。该研究提供了一种方便的方法,用于制备大肠杆菌中的转谷氨酰胺酶激活金属蛋白酶(棉花)。与WTTAMP相比,RTAMP表现出转化酶的P领域,因为分子量为55.7kDa。蛋白质完整性有利地受2-5mm CaCl2的影响。研究pH和温度最佳分配静止液至中性金属蛋白酶,比分散酶更耐热,但不是散热素。锌没有抑制作用,但3.1亩EDTA完全减少5nm夯实的活性。 MTG,超过静止的浓度三个数量级,在几分钟内大大激活。通过等温滴定热量(ITC)监测的动力学参数Km(1.31 +/- 0.05 mm)和K(CAT)(135 +/- 4.3 s(-1)),进一步突出显示催化效率(103,053 m-1s( -1))rtamp和MTG的快速加工。 ITC甚至透露,其内在抑制蛋白SSTI的静态抑制是一种焓驱动的过程,导致199 +/- 37.9nm的K-D.大肠杆菌中的rtamp的制备程序关闭了重组MTG的生产和应用之间的差距,可以提高MTG介导的药物方法的相关性。

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