Chicón Rosa, Belloque Josefina, Recio Isidra, López-Fandiño Rosina
Instituto de Fermentaciones Industriales (CSIC), Juan de la Cierva, 3, 28006 Madrid, Spain.
J Dairy Res. 2006 Feb;73(1):121-8. doi: 10.1017/S0022029905001664.
This work describes the effect of the hydrolysis time and pressure (0.1-400 MPa) on the proteolysis of beta-lactoglobulin A (beta-lg A) with trypsin, either conducting hydrolysis of beta-lg under pressure or hydrolysing beta-lg that was previously pressure treated. Pressurisation, before or during enzyme treatments, enhanced tryptic hydrolysis of beta-lg. Trypsin degraded pressure-modified beta-lg and pressure-induced beta-lg aggregates, favouring proteolysis to the intermediate degradation products: (Val(15)-Arg(40)), (Val(41)-Lys(69))S-S(Leu(149)-Ile(162)) and (Val(41)-Lys(70))S-S(Leu(149)-Ile(162)). These were further cleaved at the later stages of proteolysis to yield: (Val(15)-Tyr(20)), (Ser(21)-Arg(40)), (Val(41)-Tyr(60)), (Trp(61)-Lys(69))S-S(Leu(149)-Ile(162)) and (Trp(61)-Lys(70))S-S(Leu(149)-Ile(162)). Particularly, in the tryptic hydrolysates of pre-pressurized beta-lg, two other fragments linked by disulphide bonds: (Lys(101)-Arg(124))S-S(Leu(149)-Ile(162)) and (Tyr(102)-Arg(124))S-S(Leu(149)-Ile(162)), were found. These corresponded to rearrangement products induced by SH/SS exchange between the free thiol group of Cys(121) and Cys(160), that normally forms the disulphide bond Cys(66)-Cys(160). In the light of these results, structural modifications of beta-lg under high pressure are discussed.
本研究描述了水解时间和压力(0.1 - 400 MPa)对β-乳球蛋白A(β-lg A)经胰蛋白酶进行蛋白水解的影响,实验分别在压力条件下对β-lg进行水解,以及对预先经过压力处理的β-lg进行水解。在酶处理之前或过程中进行加压,均可增强胰蛋白酶对β-lg的水解作用。胰蛋白酶可降解经压力修饰的β-lg和压力诱导形成的β-lg聚集体,有利于蛋白水解生成中间降解产物:(缬氨酸(15)-精氨酸(40))、(缬氨酸(41)-赖氨酸(69))-S-S-(亮氨酸(149)-异亮氨酸(162))和(缬氨酸(41)-赖氨酸(70))-S-S-(亮氨酸(149)-异亮氨酸(162))。在蛋白水解后期,这些产物会进一步裂解生成:(缬氨酸(15)-酪氨酸(20))、(丝氨酸(21)-精氨酸(40))、(缬氨酸(41)-酪氨酸(60))、(色氨酸(61)-赖氨酸(69))-S-S-(亮氨酸(149)-异亮氨酸(162))和(色氨酸(61)-赖氨酸(70))-S-S-(亮氨酸(149)-异亮氨酸(162))。特别地,在预加压β-lg的胰蛋白酶水解产物中,还发现了另外两个通过二硫键连接的片段:(赖氨酸(101)-精氨酸(124))-S-S-(亮氨酸(149)-异亮氨酸(162))和(酪氨酸(102)-精氨酸(124))-S-S-(亮氨酸(149)-异亮氨酸(162))。这些片段对应于由半胱氨酸(121)的游离巯基与半胱氨酸(160)之间的-SH/-SS交换诱导产生的重排产物,半胱氨酸(121)和半胱氨酸(160)通常形成二硫键半胱氨酸(66)-半胱氨酸(160)。基于这些结果,本文讨论了β-lg在高压下的结构修饰。