Marchi-Salvador Daniela P, Fernandes Carlos A H, Silveira Lucas B, Soares Andreimar M, Fontes Marcos R M
Departamento de Física e Biofísica, Instituto de Biociências, UNESP, Distrito de Rubião Jr., Caixa Postal 510, 18618-000, Botucatu-SP, Brazil.
Biochim Biophys Acta. 2009 Nov;1794(11):1583-90. doi: 10.1016/j.bbapap.2009.07.005. Epub 2009 Jul 16.
For the first time, the structure of a catalytic inactive phospholipase A(2) homolog (Lys49-PLA(2)s) complexed with p-bromophenacyl bromide (BPB) has been solved by X-ray crystallography. Lys49-PLA(2)s are among the main components of Viperidae snake venoms, causing myonecrosis and other actions despite their catalytic inactivity. BPB, a classic inhibitor of catalytic-active PLA(2)s, has been used since the 1970s because it binds specifically the His48 residue of the catalytic site. Curiously, when Lys49-PLA(2) is chemically modified by BPB, it causes a partial inhibition of the myotoxic function which is associated with the C-terminus and not with the catalytic site. The structure of PrTX-I complexed to BPB revealed unambiguously that the inhibitor binds covalently to His48, causing a distortion of the Ca(2)(+)-binding loop region and C-terminus rearrangement in one of its monomers. The comparison between the apo and BPB-complexed PrTX-I structures showed an increased symmetry between the two monomers with the formation of an interchain hydrogen bond between Tyr119 residues. PrTX-I undergoes tertiary and quaternary structural changes when complexed to BPB which could be related to reduction of myotoxicity and other toxic activities. We also proposed a novel myotoxic inhibition hypothesis integrating "myotoxic" and "active" sites for bothropic Lys49-PLA(2)s.
首次通过X射线晶体学解析了与对溴苯甲酰溴(BPB)复合的催化无活性磷脂酶A(2)同源物(Lys49-PLA(2)s)的结构。Lys49-PLA(2)s是蝰蛇科蛇毒的主要成分之一,尽管它们没有催化活性,但会导致肌坏死和其他作用。BPB是催化活性PLA(2)s的经典抑制剂,自20世纪70年代以来一直被使用,因为它特异性结合催化位点的His48残基。奇怪的是,当Lys49-PLA(2)被BPB化学修饰时,它会部分抑制与C末端而非催化位点相关的肌毒性功能。与BPB复合的PrTX-I的结构明确显示,抑制剂与His48共价结合,导致其一个单体中的Ca(2)(+)结合环区域变形和C末端重排。apo形式和与BPB复合的PrTX-I结构之间的比较表明,两个单体之间的对称性增加,在Tyr119残基之间形成了链间氢键。当与BPB复合时,PrTX-I会发生三级和四级结构变化,这可能与肌毒性和其他毒性活性的降低有关。我们还提出了一种新的肌毒性抑制假说,整合了双斑蝰蛇Lys49-PLA(2)s的“肌毒性”和“活性”位点。