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螺旋B残基在细菌磷脂酰肌醇特异性磷脂酶C界面激活中的作用

Role of helix B residues in interfacial activation of a bacterial phosphatidylinositol-specific phospholipase C.

作者信息

Guo Su, Zhang Xin, Seaton Barbara A, Roberts Mary F

机构信息

Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, USA.

出版信息

Biochemistry. 2008 Apr 8;47(14):4201-10. doi: 10.1021/bi702269u. Epub 2008 Mar 18.

Abstract

The Bacillus thuringiensis phosphatidylinositol-specific phospholipase C (PI-PLC), an interfacial enzyme associated with prokaryotic infectivity, is activated by binding to zwitterionic surfaces, particularly phosphatidycholine (PC). Two tryptophan residues (Trp47 in the two-turn helix B and Trp242 in a disordered loop) at the rim of the barrel structure are critical for this interaction. The helix B region (Ile43 to Gly48) in wild-type PI-PLC orients the side chains of Ile43 and Trp47 so that they pack together and form a hydrophobic protrusion from the protein surface that likely facilitates initial membrane binding. In previous studies we reported that in the crystal structure of the dimeric W47A/W242A mutant, which is unable to bind to PC, the helix B region has been reorganized by the mutation into an extended loop. Here we report the construction and characterization (catalytic activity, fluorescence, and NMR studies) of a series of PI-PLC mutants targeting helix B residues and surrounding regions to explore what is needed to stabilize the "membrane-active" conformation of the helix B region. Results strongly suggest that, while hydrophobic groups and presumably an intact helix B are critical for the initial binding of PI-PLC to membranes, disruption of helix B to allow enzyme dimerization is what leads to the activated PI-PLC conformation.

摘要

苏云金芽孢杆菌磷脂酰肌醇特异性磷脂酶C(PI-PLC)是一种与原核生物感染性相关的界面酶,通过与两性离子表面(特别是磷脂酰胆碱,PC)结合而被激活。桶状结构边缘的两个色氨酸残基(两圈螺旋B中的Trp47和无序环中的Trp242)对于这种相互作用至关重要。野生型PI-PLC中的螺旋B区域(Ile43至Gly48)使Ile43和Trp47的侧链定向,从而它们聚集在一起并形成从蛋白质表面伸出的疏水突起,这可能有助于初始膜结合。在先前的研究中我们报道,在无法与PC结合的二聚体W47A/W242A突变体的晶体结构中,螺旋B区域已通过突变重排为延伸环。在此我们报道了一系列靶向螺旋B残基及其周围区域的PI-PLC突变体的构建和表征(催化活性、荧光和NMR研究),以探索稳定螺旋B区域“膜活性”构象所需的条件。结果强烈表明,虽然疏水基团以及可能完整的螺旋B对于PI-PLC与膜的初始结合至关重要,但螺旋B的破坏以允许酶二聚化才导致了激活的PI-PLC构象。

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