Atkinson B, Rott J, Rousseau I
Biotechnol Bioeng. 1977 Jul;19(7):1037-63. doi: 10.1002/bit.260190707.
The overall rate of reaction of a gel-immobilized urease particle necessarily depends upon the hydrogen ion concentrations within the particle. When the particle is unbuffered, the internal hydrogen ion concentrations are a consequence of the local rates of reaction and the rate of egress of the products of hydrolysis. A simple apparatus has been devised which allows a fairly rapid determination of the hydrogen ion concentration in the center of a particle for any given size, enzyme concentration, substrate concentration, and external pH. The products of urea hydrolysis are self-buffering in the region of pH 8.83 and for an external pH less than the self-buffering pH, the pH within the particle is increased because of the reaction. When the external pH is greater than the self-buffering pH, the converse occurs. The pH at the center of the particle approaches the self-buffering pH with an increase in particle size and enzyme concentration. The external increase in the external substrate concentration has a limited effect, simply rendering the local rates of reaction to be of zero order. The center-line pH and therefore all internal hydrogen ion concentrations depend upon the parameter L square root pe and the external pH. Differences between the external and center-line pH values of the order of units are unexceptional. The implications of the internal pH profiles on the local and overall rates of reaction are explored.
凝胶固定化脲酶颗粒的总反应速率必然取决于颗粒内部的氢离子浓度。当颗粒未进行缓冲时,内部氢离子浓度是局部反应速率和水解产物流出速率的结果。已经设计出一种简单的仪器,对于任何给定尺寸、酶浓度、底物浓度和外部pH值,它都能相当快速地测定颗粒中心的氢离子浓度。尿素水解产物在pH 8.83区域具有自缓冲作用,对于外部pH值低于自缓冲pH值的情况,由于反应,颗粒内部的pH值会升高。当外部pH值大于自缓冲pH值时,情况则相反。随着颗粒尺寸和酶浓度的增加,颗粒中心的pH值接近自缓冲pH值。外部底物浓度的增加影响有限,只是使局部反应速率变为零级。中心线pH值以及因此所有内部氢离子浓度取决于参数L乘以根号下pe和外部pH值。外部和中心线pH值之间相差几个单位的情况并不罕见。本文探讨了内部pH分布对局部和总反应速率的影响。