Katou Hidenori, Kanno Takashi, Hoshino Masaru, Hagihara Yoshihisa, Tanaka Hiroyuki, Kawai Tomoji, Hasegawa Kazuhiro, Naiki Hironobu, Goto Yuji
Institute for Protein Research, Osaka University, Yamadaoka 3-2, Suita, Osaka 565-0871, Japan.
Protein Sci. 2002 Sep;11(9):2218-29. doi: 10.1110/ps.0213202.
beta(2)-Microglobulin (beta2-m) is a major component of dialysis-related amyloid fibrils. Although recombinant beta2-m forms needle-like fibrils by in vitro extension reaction at pH 2.5, reduced beta2-m, in which the intrachain disulfide bond is reduced, cannot form typical fibrils. Instead, thinner and flexible filaments are formed, as shown by atomic force microscopy images. To clarify the role of the disulfide bond in amyloid fibril formation, we characterized the conformations of the oxidized (intact) and reduced forms of beta2-m in the acid-denatured state at pH 2.5, as well as the native state at pH 6.5, by heteronuclear NMR. [(1)H]-(15)N NOE at the regions between the two cysteine residues (Cys25-Cys80) revealed a marked difference in the pico- and nanosecond time scale dynamics between that the acid-denatured oxidized and reduced states, with the former showing reduced mobility. Intriguingly, the secondary chemical shifts, DeltaCalpha, DeltaCO, and DeltaHalpha, and (3)J(HNHalpha) coupling constants indicated that both the oxidized and reduced beta2-m at pH 2.5 have marginal alpha-helical propensity at regions close to the C-terminal cysteine, although it is a beta-sheet protein in the native state. The results suggest that the reduced mobility of the denatured state is an important factor for the amylodogenic potential of beta2-m, and that the marginal helical propensity at the C-terminal regions might play a role in modifying this potential.
β2-微球蛋白(β2-m)是透析相关淀粉样纤维的主要成分。尽管重组β2-m在pH 2.5时通过体外延伸反应形成针状纤维,但链内二硫键被还原的还原型β2-m不能形成典型的纤维。相反,如原子力显微镜图像所示,形成了更细且柔韧的细丝。为了阐明二硫键在淀粉样纤维形成中的作用,我们通过异核核磁共振对pH 2.5酸性变性状态以及pH 6.5天然状态下氧化型(完整型)和还原型β2-m的构象进行了表征。两个半胱氨酸残基(Cys25-Cys80)之间区域的[1H]-(15)N NOE显示,酸性变性的氧化态和还原态在皮秒和纳秒时间尺度动力学上存在显著差异,前者的流动性降低。有趣的是,二级化学位移ΔCα、ΔCO和ΔHα以及(3)J(HNHα)耦合常数表明,尽管β2-m在天然状态下是β折叠蛋白,但在pH 2.5时,氧化型和还原型β2-m在靠近C端半胱氨酸的区域都具有微弱的α螺旋倾向。结果表明,变性状态下降低的流动性是β2-m淀粉样变性潜力的一个重要因素,并且C端区域的微弱螺旋倾向可能在改变这种潜力方面发挥作用。