Chan W, Helms L R, Brooks I, Lee G, Ngola S, McNulty D, Maleeff B, Hensley P, Wetzel R
Department of Macromolecular Sciences, SmithKline Beecham Pharmaceuticals, King of Prussia, PA 19406, USA.
Fold Des. 1996;1(2):77-89. doi: 10.1016/s1359-0278(96)00017-x.
Inclusion body (IB) formation in bacteria is an important example of protein misassembly, a phenomenon which also includes folding-dependent aggregation in vitro and amyloid deposition in human disease. Previous studies of mutational effects in other systems implicate the stability of a folding intermediate-rather than the native state-as playing a key role in IB formation. To contribute to an understanding of the comparative biophysics of VL misassembly in different biological settings, we have studied mutation-dependent periplasmic IB formation by the VL domain REI in Escherichia coli.
A series of mutants were produced in periplasmic IBs, where, in all cases, the signal peptide was removed. In addition, the intradomain disulfide was clearly formed before deposition into IBs. IB formation in these mutants does not correlate with monomer/dimer equilibrium constants, but does correlate with the thermodynamic stability of the native state.
The results implicate a late, equilibrium folding intermediate in IB formation, in contrast to the apparent involvement of transient folding intermediates in other IB systems described to date. As equilibrium unfolding intermediates have also been implicated in light chain amyloidosis and deposition diseases, IB formation may prove a useful model for these human diseases.
细菌中包涵体(IB)的形成是蛋白质错误组装的一个重要例子,这种现象还包括体外折叠依赖性聚集以及人类疾病中的淀粉样沉积。先前在其他系统中对突变效应的研究表明,折叠中间体(而非天然状态)的稳定性在包涵体形成中起关键作用。为了有助于理解不同生物环境中VL错误组装的比较生物物理学,我们研究了大肠杆菌中VL结构域REI的突变依赖性周质包涵体形成。
在周质包涵体中产生了一系列突变体,在所有情况下,信号肽均被去除。此外,结构域内二硫键在沉积到包涵体之前就已清晰形成。这些突变体中的包涵体形成与单体/二聚体平衡常数无关,但与天然状态的热力学稳定性相关。
结果表明在包涵体形成中存在一个晚期的平衡折叠中间体,这与迄今为止描述的其他包涵体系统中明显涉及瞬时折叠中间体形成形成对比。由于平衡去折叠中间体也与轻链淀粉样变性和沉积疾病有关,包涵体形成可能被证明是这些人类疾病的一个有用模型。