Lepore Bryan W, Ruzicka Frank J, Frey Perry A, Ringe Dagmar
Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin, 1710 University Avenue, Madison, WI 53726, USA.
Proc Natl Acad Sci U S A. 2005 Sep 27;102(39):13819-24. doi: 10.1073/pnas.0505726102. Epub 2005 Sep 15.
The x-ray crystal structure of the pyridoxal-5'-phosphate (PLP), S-adenosyl-L-methionine (SAM), and [4Fe-4S]-dependent lysine-2,3-aminomutase (LAM) of Clostridium subterminale has been solved to 2.1-A resolution by single-wavelength anomalous dispersion methods on a L-selenomethionine-substituted complex of LAM with [4Fe-4S]2+, PLP, SAM, and L-alpha-lysine, a very close analog of the active Michaelis complex. The unit cell contains a dimer of hydrogen-bonded, domain-swapped dimers, the subunits of which adopt a fold that contains all three cofactors in a central channel defined by six beta/alpha structural units. Zinc coordination links the domain-swapped dimers. In each subunit, the solvent face of the channel is occluded by an N-terminal helical domain, with the opposite end of the channel packed against the domain-swapped subunit. Hydrogen-bonded ionic contacts hold the external aldimine of PLP and L-alpha-lysine in position for abstraction of the 3-pro-R hydrogen of lysine by C5' of SAM. The structure of the SAM/[4Fe-4S] complex confirms and extends conclusions from spectroscopic studies of LAM and shows selenium in Se-adenosyl-L-selenomethionine poised to ligate the unique iron in the [4Fe-4S] cluster upon electron transfer and radical formation. The chain fold in the central domain is in part analogous to other radical-SAM enzymes.
通过单波长异常色散方法,在嗜热栖热放线菌赖氨酸 -2,3-氨基变位酶(LAM)与[4Fe-4S]²⁺、磷酸吡哆醛(PLP)、S-腺苷甲硫氨酸(SAM)和L-α-赖氨酸的L-硒代甲硫氨酸取代复合物上,解析了嗜热栖热放线菌的磷酸吡哆醛(PLP)、S-腺苷甲硫氨酸(SAM)和[4Fe-4S]依赖的赖氨酸-2,3-氨基变位酶(LAM)的X射线晶体结构,该复合物是活性米氏复合物的非常接近的类似物,分辨率达到2.1埃。晶胞包含一个由氢键连接的结构域交换二聚体的二聚体,其亚基采用一种折叠结构,在由六个β/α结构单元定义的中央通道中包含所有三种辅因子。锌配位连接结构域交换二聚体。在每个亚基中,通道的溶剂面被一个N端螺旋结构域封闭,通道的另一端与结构域交换的亚基堆积在一起。氢键离子接触将PLP的外部醛亚胺和L-α-赖氨酸固定在适当位置,以便SAM的C5'提取赖氨酸的3-pro-R氢。SAM/[4Fe-4S]复合物的结构证实并扩展了对LAM光谱研究的结论,并显示硒代腺苷-L-硒代甲硫氨酸中的硒在电子转移和自由基形成时准备与[4Fe-4S]簇中的独特铁配位。中央结构域中的链折叠部分类似于其他自由基-SAM酶。