Mäkelä H I, Gröhn O H, Kettunen M I, Kauppinen R A
National Bio-NMR Facility, University of Kuopio, Kuopio, FIN-70211, Finland.
Biochem Biophys Res Commun. 2001 Dec 14;289(4):813-8. doi: 10.1006/bbrc.2001.6058.
T1 relaxation in the rotating frame (T1rho) is a sensitive magnetic resonance imaging (MRI) contrast for acute brain insults. Biophysical mechanisms affecting T1rho relaxation rate (R1rho) and R1rho dispersion (dependency of R1rho on the spin-lock field) were studied in protein solutions by varying their chemical environment and pH in native, heat-denatured, and glutaraldehyde (GA) cross-linked samples. Low pH strongly reduced R1rho in heat-denatured phantoms displaying proton resonances from a number of side-chain chemical groups in high-resolution 1H NMR spectra. At pH of 5.5, R1rho dispersion was completely absent. In contrast, in the GA-treated phantoms with very few NMR visible side chain groups, acidic pH showed virtually no effect on R1rho. The present data point to a crucial role of proton exchange on R1rho and R1rho dispersion in immobilized protein solution mimicking tissue relaxation properties.
旋转坐标系中的T1弛豫(T1rho)是急性脑损伤的一种敏感磁共振成像(MRI)对比剂。通过改变蛋白质溶液在天然、热变性和戊二醛(GA)交联样品中的化学环境和pH值,研究了影响T1rho弛豫率(R1rho)和R1rho色散(R1rho对自旋锁定场的依赖性)的生物物理机制。低pH值强烈降低了热变性体模中的R1rho,在高分辨率1H NMR光谱中显示出来自多个侧链化学基团的质子共振。在pH值为5.5时,R1rho色散完全消失。相比之下,在GA处理的几乎没有NMR可见侧链基团的体模中,酸性pH值对R1rho几乎没有影响。目前的数据表明质子交换在模拟组织弛豫特性的固定化蛋白质溶液中对R1rho和R1rho色散起着关键作用。