Uversky V N, Gillespie J R, Millett I S, Khodyakova A V, Vasiliev A M, Chernovskaya T V, Vasilenko R N, Kozlovskaya G D, Dolgikh D A, Fink A L, Doniach S, Abramov V M
Institute for Biological Instrumentation, Russian Academy of Sciences, 142292 Pushchino, Moscow Region, Russia.
Biochemistry. 1999 Nov 9;38(45):15009-16. doi: 10.1021/bi990752+.
Prothymosin alpha has previously been shown to be unfolded at neutral pH, thus belonging to a growing family of "natively unfolded" proteins. The structural properties and conformational stability of recombinant human prothymosin alpha were characterized at neutral and acidic pH by gel filtration, SAXS, circular dichroism, ANS fluorescence, (1)H NMR, and resistance to urea-induced unfolding. Interestingly, prothymosin alpha underwent a cooperative transition from the unfolded state into a partially folded conformation on lowering the pH. This conformation of prothymosin alpha is a compact denatured state, with structural properties different from those of the molten globule. The formation of alpha-helical structure by the glutamic acid-rich elements of the protein accompanied by the partial hydrophobic collapse is expected at lower pH due to the neutralization of the negatively charged residues. It is possible that such conformational changes may be associated with the protein function.
胸腺素α原先前已被证明在中性pH值下呈未折叠状态,因此属于不断增加的“天然未折叠”蛋白质家族。通过凝胶过滤、小角X射线散射、圆二色性、ANS荧光、核磁共振氢谱以及对尿素诱导的去折叠的抗性,对重组人胸腺素α原在中性和酸性pH值下的结构特性和构象稳定性进行了表征。有趣的是,在降低pH值时,胸腺素α原经历了从未折叠状态到部分折叠构象的协同转变。胸腺素α原的这种构象是一种紧密的变性状态,其结构特性不同于熔球态。由于带负电荷残基的中和作用,预计在较低pH值下,蛋白质中富含谷氨酸的元件会形成α-螺旋结构并伴随部分疏水塌缩。这种构象变化可能与蛋白质功能相关。