Kroemer Markus, Merkel Iris, Schulz Georg E
Institut für Organische Chemie und Biochemie, Albertstrasse 21, 79104 Freiburg im Breisgau, Germany.
Biochemistry. 2003 Sep 16;42(36):10560-8. doi: 10.1021/bi0349266.
The structure of L-rhamnulose-1-phosphate aldolase has been established at 1.35 A resolution in a crystal form that was obtained by a surface mutation and has one subunit of the C(4)-symmetric tetramer in the asymmetric unit. It confirms an earlier 2.7 A resolution structure which was determined in a complicated crystal form with 20 subunits per asymmetric unit. The chain fold and the active center are similar to those of L-fuculose-1-phosphate aldolase and L-ribulose-5-phosphate 4-epimerase. The active center similarity is supported by a structural comparison of all three enzymes and by the binding mode of the inhibitor phosphoglycolohydroxamate at the site of the product dihydroxyacetone phosphate for the two aldolases. The sensitivity of the catalytic rate to several mutations and a comparison with the established mechanism of the related aldolase give rise to a putative catalytic mechanism. This mechanism involves the same binding mode of the second product L-lactaldehyde in both aldolases, except for a 180 degrees flip of the aldehyde group distinguishing between the two epimers rhamnulose and fuculose. The N-terminal domain exhibits a correlated anisotropic mobility that channels the isotropic Brownian motion into a directed movement of the catalytic base and the substrate phosphate on the N-domain toward the zinc ion and the lactaldehyde on the C-terminal domain. We suggest that this movement supports the catalysis mechanically.
L-鼠李糖-1-磷酸醛缩酶的结构已通过表面突变获得的晶体形式,在1.35 Å分辨率下得以确定,该晶体形式在不对称单元中有一个C(4)对称四聚体的亚基。它证实了早期在一个复杂晶体形式中确定的2.7 Å分辨率结构,该复杂晶体形式在每个不对称单元中有20个亚基。其链折叠和活性中心与L-岩藻糖-1-磷酸醛缩酶和L-核糖-5-磷酸4-差向异构酶的相似。所有三种酶的结构比较以及抑制剂磷酸甘氨酰羟肟酸在两种醛缩酶的产物磷酸二羟丙酮位点的结合模式,都支持了活性中心的相似性。催化速率对几种突变的敏感性以及与相关醛缩酶已确立机制的比较,产生了一种推测的催化机制。该机制涉及两种醛缩酶中第二种产物L-乳醛的相同结合模式,除了醛基有180度翻转,这区分了鼠李糖和岩藻糖这两种差向异构体。N端结构域表现出相关的各向异性迁移率,它将各向同性的布朗运动引导为催化碱基和N结构域上的底物磷酸朝着锌离子以及C端结构域上的乳醛的定向运动。我们认为这种运动在机械上支持了催化作用。