Jones M N, Finn A, Mosavi-Movahedi A, Waller B J
Biochim Biophys Acta. 1987 Jul 7;913(3):395-8. doi: 10.1016/0167-4838(87)90151-8.
In marked contrast to most enzymes it is found that at pH 6.4 the activity of the fungal catalase from Aspergillus niger is increased on binding of sodium n-dodecyl sulphate (SDS). Activation of the enzyme by up to 180% is found under optimum conditions when approx. 150 SDS molecules are bound. Activation does not occur under acid (pH 3.2) or alkaline (pH 10.0) conditions. Sedimentation analysis confirms that the enzyme does not dissociate into subunits at pH 6.4 (or pH 10.0). These observations are considered in the light of other catalase-SDS studies and it is suggested that the binding of SDS to Aspergillus niger catalase at pH 6.4 results in a small conformational change facilitating the enzymic reaction.
与大多数酶形成显著对比的是,发现在pH 6.4时,来自黑曲霉的真菌过氧化氢酶的活性在结合正十二烷基硫酸钠(SDS)后会增加。在最佳条件下,当约150个SDS分子结合时,酶的活性可提高多达180%。在酸性(pH 3.2)或碱性(pH 10.0)条件下不会发生激活。沉降分析证实该酶在pH 6.4(或pH 10.0)时不会解离成亚基。根据其他过氧化氢酶-SDS研究对这些观察结果进行了考虑,并提出在pH 6.4时SDS与黑曲霉过氧化氢酶的结合会导致微小的构象变化,从而促进酶促反应。