Jenni Simon, Leibundgut Marc, Boehringer Daniel, Frick Christian, Mikolásek Bohdan, Ban Nenad
Institute of Molecular Biology and Biophysics, ETH Zurich, 8092 Zurich, Switzerland.
Science. 2007 Apr 13;316(5822):254-61. doi: 10.1126/science.1138248.
We report crystal structures of the 2.6-megadalton alpha6beta6 heterododecameric fatty acid synthase from Thermomyces lanuginosus at 3.1 angstrom resolution. The alpha and beta polypeptide chains form the six catalytic domains required for fatty acid synthesis and numerous expansion segments responsible for extensive intersubunit connections. Detailed views of all active sites provide insights into substrate specificities and catalytic mechanisms and reveal their unique characteristics, which are due to the integration into the multienzyme. The mode of acyl carrier protein attachment in the reaction chamber, together with the spatial distribution of active sites, suggests that iterative substrate shuttling is achieved by a relatively restricted circular motion of the carrier domain in the multifunctional enzyme.
我们报道了来自嗜热栖热菌的2.6兆道尔顿α6β6异十二聚体脂肪酸合酶在3.1埃分辨率下的晶体结构。α和β多肽链形成脂肪酸合成所需的六个催化结构域以及负责广泛亚基间连接的众多扩展片段。所有活性位点的详细视图为底物特异性和催化机制提供了见解,并揭示了它们独特的特征,这是由于整合到多酶中所致。反应腔中酰基载体蛋白的附着模式,连同活性位点的空间分布,表明迭代底物穿梭是通过多功能酶中载体结构域相对受限的圆周运动实现的。