Novak Walter R P, Bhattacharyya Basudeb, Grilley Daniel P, Weaver Todd M
Department of Chemistry, Wabash College, 301 West Wabash Avenue, Crawfordsville, IN 47933, USA.
Department of Chemistry and Biochemistry, University of Wisconsin-La Crosse, 1725 State Street, La Crosse, WI 54601, USA.
Acta Crystallogr F Struct Biol Commun. 2017 Mar 1;73(Pt 3):138-145. doi: 10.1107/S2053230X17002102. Epub 2017 Feb 21.
Wild-type and variant forms of HpmA265 (truncated hemolysin A) from Proteus mirabilis reveal a right-handed, parallel β-helix capped and flanked by segments of antiparallel β-strands. The low-salt crystal structures form a dimeric structure via the implementation of on-edge main-chain hydrogen bonds donated by residues 243-263 of adjacent monomers. Surprisingly, in the high-salt structures of two variants, Y134A and Q125A-Y134A, a new dimeric interface is formed via main-chain hydrogen bonds donated by residues 203-215 of adjacent monomers, and a previously unobserved tetramer is formed. In addition, an eight-stranded antiparallel β-sheet is formed from the flap regions of crystallographically related monomers in the high-salt structures. This new interface is possible owing to additional proteolysis of these variants after Tyr240. The interface formed in the high-salt crystal forms of hemolysin A variants may mimic the on-edge β-strand positioning used in template-assisted hemolytic activity.
奇异变形杆菌中HpmA265(截短的溶血素A)的野生型和变体形式呈现出一种右手平行β-螺旋结构,其两端由反平行β-链片段封端和侧翼环绕。低盐晶体结构通过相邻单体的243 - 263位残基提供的边缘主链氢键形成二聚体结构。令人惊讶的是,在两个变体Y134A和Q125A - Y134A的高盐结构中,通过相邻单体的203 - 215位残基提供的主链氢键形成了一个新的二聚体界面,并形成了一个之前未观察到的四聚体。此外,在高盐结构中,由晶体学相关单体的侧翼区域形成了一个八链反平行β-折叠。由于这些变体在Tyr240之后发生了额外的蛋白水解作用,这种新界面才得以形成。溶血素A变体的高盐晶体形式中形成的界面可能模拟了模板辅助溶血活性中使用的边缘β-链定位。