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与白喉毒素结合的烟酰胺腺嘌呤二核苷酸(NAD)的异常构象:与结合到氧化还原酶的NAD的比较。

Unusual conformation of nicotinamide adenine dinucleotide (NAD) bound to diphtheria toxin: a comparison with NAD bound to the oxidoreductase enzymes.

作者信息

Bell C E, Yeates T O, Eisenberg D

机构信息

UCLA-DOE Laboratory of Structural Biology and Molecular Medicine 90095-1569, USA.

出版信息

Protein Sci. 1997 Oct;6(10):2084-96. doi: 10.1002/pro.5560061004.

Abstract

The conformation of NAD bound to diphtheria toxin (DT), an ADP-ribosylating enzyme, has been compared to the conformations of NAD(P) bound to 23 distinct NAD(P)-binding oxidoreductase enzymes, whose structures are available in the Brookhaven Protein Data Bank. For the oxidoreductase enzymes, NAD(P) functions as a cofactor in electron transfer, whereas for DT, NAD is a labile substrate in which the N-glycosidic bond between the nicotinamide ring and the N-ribose is cleaved. All NAD(P) conformations were compared by (1) visual inspection of superimposed molecules, (2) RMSD of atomic positions, (3) principal component analysis, and (4) analysis of torsion angles and other conformational parameters. Whereas the majority of oxidoreductase-bound NAD(P) conformations are found to be similar, the conformation of NAD bound to DT is found to be unusual. Distinctive features of the conformation of NAD bound to DT that may be relevant to DT's function as an ADP-ribosylating enzyme include (1) an unusually short distance between the PN and N1N atoms, reflecting a highly folded conformation for the nicotinamide mononucleotide (NMN) portion of NAD, and (2) a torsion angle chi N approximately 0 degree about the scissile N-glycosidic bond, placing the nicotinamide ring outside of the preferred anti and syn orientations. In NAD bound to DT, the highly folded NMN conformation and torsion angle chi N approximately 0 degree could contribute to catalysis, possibly by orienting the C1'N atom of NAD for nucleophilic attack, or by placing strain on the N-glycosidic bond, which is cleaved by DT. The unusual overall conformation of NAD bound to DT is likely to reflect the structure of DT, which is unusual among NAD(P)-binding enzymes. In DT, the NAD binding site is formed at the junction of two antiparallel beta-sheets. In contrast, although the 24 oxidoreductase enzymes belong to at least six different structural classes, almost all of them bind NAD(P) at the C-terminal end of a parallel beta-sheet. The structural alignments and principal component analysis show that enzymes of the same structural class bind to particularly similar conformations of NAD(P), with few exceptions. The conformation of NAD bound to DT superimposes closely with that of an NAD analogue bound to Pseudomonas exotoxin A, an ADP-ribosylating toxin that is structurally homologous to DT. This suggests that all of the ADP-ribosylating enzymes that are structurally homologous to DT and ETA will bind a highly similar conformation of NAD.

摘要

已将与白喉毒素(DT,一种ADP-核糖基化酶)结合的NAD构象,与与23种不同的NAD(P)结合氧化还原酶结合的NAD(P)构象进行了比较,这些氧化还原酶的结构可在布鲁克海文蛋白质数据库中获取。对于氧化还原酶而言,NAD(P)作为电子转移中的辅助因子发挥作用,而对于DT来说,NAD是一种不稳定的底物,其中烟酰胺环与N-核糖之间的N-糖苷键会被裂解。通过以下方式对所有NAD(P)构象进行了比较:(1) 对叠加分子进行目视检查;(2) 原子位置的均方根偏差(RMSD);(3) 主成分分析;(4) 扭转角和其他构象参数分析。虽然发现大多数与氧化还原酶结合的NAD(P)构象相似,但发现与DT结合的NAD构象却不寻常。与DT结合的NAD构象的独特特征可能与DT作为ADP-核糖基化酶的功能相关,这些特征包括:(1) PN与N1N原子之间的距离异常短,这反映了NAD的烟酰胺单核苷酸(NMN)部分具有高度折叠的构象;(2) 围绕可裂解的N-糖苷键的扭转角χN约为0度,使得烟酰胺环处于优选的反式和顺式取向之外。在与DT结合的NAD中,高度折叠的NMN构象和扭转角χN约为0度可能有助于催化作用,可能是通过使NAD的C1'N原子定向以进行亲核攻击,或者是通过对被DT裂解的N-糖苷键施加张力。与DT结合的NAD的异常整体构象可能反映了DT的结构,DT在NAD(P)结合酶中是不寻常的。在DT中,NAD结合位点在两个反平行β-折叠的交界处形成。相比之下,尽管这24种氧化还原酶至少属于六个不同的结构类别,但几乎所有酶都在平行β-折叠的C末端结合NAD(P)。结构比对和主成分分析表明,除少数例外,同一结构类别的酶与特别相似的NAD(P)构象结合。与DT结合的NAD构象与与铜绿假单胞菌外毒素A(一种与DT结构同源的ADP-核糖基化毒素)结合的NAD类似物的构象紧密叠加。这表明所有与DT和ETA结构同源的ADP-核糖基化酶将结合高度相似的NAD构象。

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