Kumar Rajesh
Centre for Chemical Sciences, School of Basic and Applied Sciences, Central University of Punjab, Bathinda, 151001, India; School of Chemistry and Biochemistry, Thapar Institute of Engineering and Technology University, Patiala, 147004, India.
Arch Biochem Biophys. 2016 Sep 15;606:16-25. doi: 10.1016/j.abb.2016.07.010. Epub 2016 Jul 15.
This paper analyzes the effect of pH on thermodynamic stability, low-frequency local motions and microsecond folding kinetics of carbonmonoxycytochrome c (Cyt-CO) all across the alkaline pH-unfolding transition of protein. Thermodynamic analysis of urea-induced unfolding transitions of Cyt-CO measured between pH 6 and pH 11.9 reveals that Cyt-CO is maximally stable at pH∼9.5. Dilution of unfolded Cyt-CO into refolding medium forms a native-like compact state (NCO-state), where Fe(2+)-CO interaction persists. Kinetic and thermodynamic parameters measured for slow thermally-driven CO dissociation (NCO→N+CO) and association (N+CO→NCO) reactions between pH 6.5 and pH 13 reveal that the thermal-motions of M80-containing Ω-loop are decreased in subdenaturing limit of alkaline pH. Laser photolysis of Fe(2+)-CO bond in NCO-state triggers the microsecond folding (NCO→N). The microsecond kinetics measured all across the alkaline pH-unfolding transition of Cyt-CO produce rate rollover in the refolding limb of chevron plot, which suggests a glass transition of NCO en route to N. Between pH 7 and pH 11.9, the natural logarithm of the microsecond folding rate varies by < 1.5 units while the natural logarithm of apparent equilibrium constant varies by 11.8 units. This finding indicates that the pH-dependent ionic-interactions greatly affect the global stability of protein but have very small effect on folding kinetics.
本文分析了pH值对一氧化碳细胞色素c(Cyt-CO)在蛋白质碱性pH值展开转变过程中的热力学稳定性、低频局部运动和微秒级折叠动力学的影响。对在pH值6至11.9之间测量的尿素诱导的Cyt-CO展开转变进行热力学分析表明,Cyt-CO在pH值约为9.5时最稳定。将未折叠的Cyt-CO稀释到复性介质中会形成类似天然的紧密状态(NCO状态),其中Fe(2+)-CO相互作用持续存在。对pH值6.5至13之间缓慢热驱动的CO解离(NCO→N+CO)和缔合(N+CO→NCO)反应测量的动力学和热力学参数表明,在碱性pH值的亚变性极限下,含M80的Ω环的热运动降低。NCO状态下Fe(2+)-CO键的激光光解触发微秒级折叠(NCO→N)。在Cyt-CO的碱性pH值展开转变过程中测量的微秒级动力学在V形图的复性分支中产生速率翻转,这表明NCO在向N转变的过程中发生了玻璃化转变。在pH值7至11.9之间,微秒级折叠速率的自然对数变化小于1.5个单位,而表观平衡常数的自然对数变化为11.8个单位。这一发现表明,pH值依赖性离子相互作用极大地影响蛋白质的整体稳定性,但对折叠动力学的影响非常小。