Lee Sungmun, Carson Kenneth, Rice-Ficht Allison, Good Theresa
Department of Chemical Engineering, Texas A&M University, College Station, Texas 77843-3122, USA.
Protein Sci. 2005 Mar;14(3):593-601. doi: 10.1110/ps.041020705.
Beta-amyloid (Abeta) is a major protein component of senile plaques in Alzheimer's disease, and is neurotoxic when aggregated. The size of aggregated Abeta responsible for the observed neurotoxicity and the mechanism of aggregation are still under investigation; however, prevention of Abeta aggregation still holds promise as a means to reduce Abeta neurotoxicity. In research presented here, we show that Hsp20, a novel alpha-crystallin isolated from the bovine erythrocyte parasite Babesia bovis, was able to prevent aggregation of denatured alcohol dehydrogenase when the two proteins are present at near equimolar levels. We then examined the ability of Hsp20 produced as two different fusion proteins to prevent Abeta amyloid formation as indicated by Congo Red binding; we found that not only was Hsp20 able to dramatically reduce Congo Red binding, but it was able to do so at molar ratios of Hsp20 to Abeta of 1 to 1000. Electron microscopy confirmed that Hsp20 does prevent Abeta fibril formation. Hsp20 was also able to significantly reduce Abeta toxicity to both SH-SY5Y and PC12 neuronal cells at similar molar ratios. At high concentrations of Hsp20, the protein no longer displays its aggregation inhibition and toxicity attenuation properties. Size exclusion chromatography indicated that Hsp20 was active at low concentrations in which dimer was present. Loss of activity at high concentrations was associated with the presence of higher oligomers of Hsp20. This work could contribute to the development of a novel aggregation inhibitor for prevention of Abeta toxicity.
β-淀粉样蛋白(Aβ)是阿尔茨海默病中淀粉样斑块的主要蛋白质成分,聚集时具有神经毒性。导致观察到的神经毒性的聚集Aβ的大小以及聚集机制仍在研究中;然而,预防Aβ聚集作为降低Aβ神经毒性的一种手段仍具有前景。在本文所展示的研究中,我们发现,从牛红细胞寄生虫牛巴贝斯虫中分离出的一种新型α-晶状体蛋白Hsp20,当两种蛋白质以接近等摩尔水平存在时,它能够防止变性乙醇脱氢酶的聚集。然后,我们检测了作为两种不同融合蛋白产生的Hsp20预防Aβ淀粉样形成的能力(通过刚果红结合来指示);我们发现,Hsp20不仅能够显著降低刚果红结合,而且在Hsp20与Aβ的摩尔比为1比1000时就能做到。电子显微镜证实Hsp20确实能防止Aβ纤维形成。在相似的摩尔比下,Hsp20还能够显著降低Aβ对SH-SY5Y和PC12神经元细胞的毒性。在高浓度的Hsp20下,该蛋白质不再表现出其聚集抑制和毒性减弱特性。尺寸排阻色谱表明,Hsp20在存在二聚体的低浓度下具有活性。高浓度下活性丧失与Hsp20更高聚体的存在有关。这项工作可能有助于开发一种新型聚集抑制剂以预防Aβ毒性。