Van Breemen J F, Ploegman J H, Van Bruggen E F
Eur J Biochem. 1979 Oct;100(1):61-5. doi: 10.1111/j.1432-1033.1979.tb02033.x.
Mild trypsinolysis of Helix pomatia beta-hemocyanin leads to the formation of tubular polymers after removal of the collar part [van Breemen, J.F.L., Wichertjes, T., Muller, M.F.J., van Driel, R., and van Bruggen, E.F.J. (1975) Eur. J. Biochem. 60, 129--135]. Three-dimensional image reconstruction from electron micrographs of negatively stained tubular polymers showed: (a) alternating deep and shallow grooves in between the 10 helical chains, (b) the presence and position of two domains within each morphological wall-unit of the Mellema and Klug model [Mellema, J. E. and Klug, A. (1972) Nature (Lond.) 239, 146--150]. Optical diffraction of oxy and deoxygenated tubular polymers indicate a significant decrease in diameter with a concomitant increase in length upon deoxygenation.
对玛瑙螺β-血蓝蛋白进行轻度胰蛋白酶解,去除颈环部分后会形成管状聚合物[范·布雷曼,J.F.L.,维切特耶斯,T.,米勒,M.F.J.,范·德里尔,R.,以及范·布鲁根,E.F.J.(1975年)《欧洲生物化学杂志》60卷,第129 - 135页]。对经负染的管状聚合物电子显微照片进行三维图像重建显示:(a)在10条螺旋链之间有深浅交替的凹槽,(b)在梅勒马和克鲁格模型[梅勒马,J.E.和克鲁格,A.(1972年)《自然》(伦敦)239卷,第146 - 150页]的每个形态壁单元内存在两个结构域及其位置。对氧合和脱氧的管状聚合物进行光学衍射表明,脱氧时直径显著减小,同时长度增加。