Peyton D H, La Mar G N, Gersonde K
Department of Chemistry, University of California, Davis 95616.
Biochim Biophys Acta. 1988 Apr 28;954(1):82-94. doi: 10.1016/0167-4838(88)90058-1.
The nuclear Overhauser effect (NOE) was used to investigate heme orientation and to obtain assignments for all resolved resonances in the 1H-NMR spectrum of met-cyano Chironomus thummi thummi monomeric hemoglobins III and IV (Hb III and Hb IV). The only non-heme resolved resonance was found to be from Phe-38 (CD1), and NOE dipolar connectivity between this resonance and the heme 5- and 8-methyls was used to establish the absolute orientation of the heme for each heme-insertion isomer present. The assignments of resonances and heme disorder permitted structural comparisons between the various components, including those due to a point mutation in Hb III. Finally, the characteristic differences of NOE patterns to amino-acid protons from substituents on heme pyrroles I and II formed the basis for assigning resonances and heme orientation relative to native Hb IV for deuterohemin-reconstituted Hb IV, for which there are no X-ray data available.
利用核Overhauser效应(NOE)来研究血红素的取向,并对间氰基嗜虫摇蚊单体血红蛋白III和IV(Hb III和Hb IV)的1H-NMR谱中所有解析出的共振峰进行归属。唯一解析出的非血红素共振峰来自苯丙氨酸-38(CD1),利用该共振峰与血红素5-甲基和8-甲基之间的NOE偶极连接性来确定每种存在的血红素插入异构体中血红素的绝对取向。共振峰的归属和血红素无序性使得能够对各种组分进行结构比较,包括由于Hb III中的点突变导致的组分。最后,来自血红素吡咯I和II上取代基的NOE模式与氨基酸质子的特征差异,为氘代血红素重构的Hb IV(尚无X射线数据)的共振峰归属和相对于天然Hb IV的血红素取向提供了依据。