Majeed Shahzad, Ofek Gilad, Belachew Adam, Huang Chih-chin, Zhou Tongqing, Kwong Peter D
Vaccine Research Center, National Institutes of Health, Bethesda, MD 20892, USA.
Structure. 2003 Sep;11(9):1061-70. doi: 10.1016/s0969-2126(03)00185-0.
Suitable conditions for protein crystallization are commonly identified by screening combinations of independent factors that affect crystal formation. Because precipitating agents are prime determinants of crystallization, we investigated whether a systematic exploration of combinations of mechanistically distinct precipitants would enhance crystallization. A crystallization screen containing 64 precipitant mixtures was devised. Tests with ten HIV envelope-related proteins demonstrated that use of precipitant mixtures significantly enhanced both the probability of crystallization as well as the quality of optimized crystals. Tests with hen egg white lysozyme generated a novel C2 crystal from a salt/organic solvent mixture; structure solution at 2 A resolution revealed a lattice held together by both hydrophobic and electrostatic dyad interactions. The results indicate that mechanistically distinct precipitants can synergize, with precipitant combinations adding unique dimensions to protein crystallization.
蛋白质结晶的适宜条件通常是通过筛选影响晶体形成的独立因素组合来确定的。由于沉淀剂是结晶的主要决定因素,我们研究了对机制不同的沉淀剂组合进行系统探索是否会提高结晶效果。设计了一个包含64种沉淀剂混合物的结晶筛选体系。对十种HIV包膜相关蛋白的测试表明,使用沉淀剂混合物显著提高了结晶的概率以及优化晶体的质量。用鸡蛋清溶菌酶进行的测试从盐/有机溶剂混合物中生成了一种新型C2晶体;2埃分辨率的结构解析显示,晶格通过疏水和静电二元相互作用维系在一起。结果表明,机制不同的沉淀剂可以产生协同作用,沉淀剂组合为蛋白质结晶增添了独特的维度。