Dasgupta Antara, Das Debapratim, Das Prasanta Kumar
Department of Biological Chemistry, Indian Association for the Cultivation of Science, Jadavpur, Kolkata 700032, India.
Biochimie. 2005 Dec;87(12):1111-9. doi: 10.1016/j.biochi.2005.05.006. Epub 2005 Jun 14.
The catalytic efficiency of trypsin was estimated in cationic reverse micelles as a function of the concentration of water-pool components and aggregate size to determine their independent influence on enzyme activity. The variation in the aggregate size/water-pool size was achieved by changing both the W0 (mole ratio of water to surfactant) and the headgroup area of surfactant through introduction of hydroxyethyl groups at the polar head. The local molar concentrations of water present inside the water-pool ([H2O]wp) of different cationic reverse micelles across varying W0 was estimated using a modified phenyl cation-trapping protocol. The [H2O]wp in cationic reverse micelles (surfactant/isooctane/n-hexanol/water) increases with W0 and attains the molarity of normal water beyond W0=40 irrespective of the nature of headgroup. Concurrently, the catalytic activity of trypsin compartmentalized within the water-pool increases with the increase in [H2O]wp upto an optimal W0=40 in organized solutions of any surfactant. The aggregate size (determined by static light scattering) also increases expectedly with W0 and noticeably with the area of the surfactant headgroup at similar W0. Since the enzyme activity rises both with the increase in water-pool size and [H2O]wp, trypsin's efficiency was compared with these two parameters across reverse micelles of varying surfactant headgroup size at similar W0 to determine their probable independent influence in regulating the enzyme activity. Noticeably, the efficiency of trypsin rises two to ninefold in spite of the [H2O]wp being distinctly lower in case of hydroxyethyl group substituted surfactants compared to cetyltrimethylammonium bromide w/o microemulsions at similar W0. Thus, the influence of the aggregate size possibly plays an important role alongwith the [H2O]wp in modulating the enzyme activity.
在阳离子反胶束中,根据水池组分浓度和聚集体大小对胰蛋白酶的催化效率进行了评估,以确定它们对酶活性的独立影响。通过改变W0(水与表面活性剂的摩尔比)以及通过在极性头部引入羟乙基基团来改变表面活性剂的头基面积,实现了聚集体大小/水池大小的变化。使用改良的苯基阳离子捕获方案估算了不同阳离子反胶束在不同W0下,水池内部水的局部摩尔浓度([H2O]wp)。阳离子反胶束(表面活性剂/异辛烷/正己醇/水)中的[H2O]wp随W0增加而增加,并且在W0 = 40以上时达到正常水的摩尔浓度,与头基的性质无关。同时,在任何表面活性剂的有序溶液中,分隔在水池内的胰蛋白酶的催化活性随着[H2O]wp的增加而增加,直至达到最佳W0 = 40。聚集体大小(通过静态光散射测定)也随着W0预期增加,并且在相似W0下随着表面活性剂头基面积显著增加。由于酶活性随着水池大小和[H2O]wp的增加而提高,因此在相似W0下,比较了不同表面活性剂头基大小的反胶束中胰蛋白酶的效率与这两个参数,以确定它们在调节酶活性方面可能的独立影响。值得注意的是,在相似W0下,与十六烷基三甲基溴化铵无微乳液相比,在羟乙基基团取代的表面活性剂情况下,尽管[H2O]wp明显较低,但胰蛋白酶的效率仍提高了两到九倍。因此,聚集体大小的影响可能与[H2O]wp一起在调节酶活性中起重要作用。