Voorter C E, Wintjes L T, Heinstra P W, Bloemendal H, De Jong W W
Department of Biochemistry, University of Nijmegen, The Netherlands.
Eur J Biochem. 1993 Feb 1;211(3):643-8. doi: 10.1111/j.1432-1033.1993.tb17592.x.
epsilon-Crystallin occurs as an abundant lens protein in many birds and in crocodiles and has been identified as heart-type lactate dehydrogenase (LDH-B4). Lens proteins have, due to their longevity and environmental conditions, extraordinary requirements for structural stability. To study lens-protein stability, we compared various parameters of LDH-B4/epsilon-crystallin from lens and/or heart of duck, which has abundant amounts of this enzyme in its lenses, and of chicken and pig, which have no epsilon-crystallin. Measuring the thermostability of LDH-B4 from the different sources, the t50 values (temperature at which 50% of the enzyme activity remains after a 20-min period) for LDH-B4 from duck heart, duck lens and chicken heart were all found to be around 76 degrees C, whereas pig heart LDH-B4 was less thermostable, having a t50 value of 62.5 degrees C. A similar tendency was found with urea inactivation studies. Plotting the first-order rate constants obtained from inactivation kinetic plots against urea concentration, it was clear that LDH-B4 from pig heart was less stable in urea than the homologous enzymes from duck heart, chicken heart and duck lens. The duck and chicken enzymes were also much more resistant against proteolysis than the porcine enzyme. Therefore, it is concluded that avian LDH-B4 is structurally more stable than the homologous enzyme in mammals. This greater stability might make it suitable to function as a crystallin, as in duck, but is not necessarily associated with high lens expression, as in chicken.
ε-晶体蛋白在许多鸟类和鳄鱼的晶状体中作为一种丰富的晶状体蛋白存在,并且已被鉴定为心脏型乳酸脱氢酶(LDH-B4)。由于晶状体蛋白的寿命长和环境条件特殊,它们对结构稳定性有非凡的要求。为了研究晶状体蛋白的稳定性,我们比较了来自鸭(其晶状体中含有大量这种酶)、鸡和猪(它们没有ε-晶体蛋白)的晶状体和/或心脏中的LDH-B4/ε-晶体蛋白的各种参数。测量来自不同来源的LDH-B4的热稳定性,发现鸭心脏、鸭晶状体和鸡心脏的LDH-B4的t50值(20分钟后仍保留50%酶活性的温度)均约为76℃,而猪心脏LDH-B4的热稳定性较差,t50值为62.5℃。尿素失活研究也发现了类似的趋势。将失活动力学曲线得到的一级速率常数与尿素浓度作图,很明显猪心脏的LDH-B4在尿素中比鸭心脏、鸡心脏和鸭晶状体的同源酶更不稳定。鸭和鸡的酶对蛋白水解的抵抗力也比猪的酶强得多。因此,可以得出结论,鸟类的LDH-B4在结构上比哺乳动物的同源酶更稳定。这种更高的稳定性可能使其适合像在鸭中那样作为晶体蛋白发挥作用,但不一定与像在鸡中那样的高晶状体表达相关。