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酸性应激伴侣蛋白HdeA和HdeB对蛋白质聚集体的溶解作用。

Solubilization of protein aggregates by the acid stress chaperones HdeA and HdeB.

作者信息

Malki Abderrahim, Le Hai-Tuong, Milles Sigrid, Kern Renée, Caldas Teresa, Abdallah Jad, Richarme Gilbert

机构信息

Stress Molecules Laboratory, Institut Jacques Monod, Université Paris 7, 2 place Jussieu, 75005 Paris, France.

出版信息

J Biol Chem. 2008 May 16;283(20):13679-87. doi: 10.1074/jbc.M800869200. Epub 2008 Mar 20.

Abstract

The acid stress chaperones HdeA and HdeB of Escherichia coli prevent the aggregation of periplasmic proteins at acidic pH. We show in this report that they also form mixed aggregates with proteins that have failed to be solubilized at acidic pH and allow their subsequent solubilization at neutral pH. HdeA, HdeB, and HdeA and HdeB together display an increasing efficiency for the solubilization of protein aggregates at pH 3. They are less efficient for the solubilization of aggregates at pH 2, whereas HdeB is the most efficient. Increasing amounts of periplasmic proteins draw increasing amounts of chaperone into pellets, suggesting that chaperones co-aggregate with their substrate proteins. We observed a decrease in the size of protein aggregates in the presence of HdeA and HdeB, from very high molecular mass aggregates to 100-5000-kDa species. Moreover, a marked decrease in the exposed hydrophobicity of aggregated proteins in the presence of HdeA and HdeB was revealed by 1,1'-bis(4-anilino)naphtalene-5,5'-disulfonic acid binding experiments. In vivo, during the recovery at neutral pH of acid stressed bacterial cells, HdeA and HdeB allow the solubilization and renaturation of protein aggregates, including those formed by the maltose receptor MalE, the oligopeptide receptor OppA, and the histidine receptor HisJ. Thus, HdeA and HdeB not only help to maintain proteins in a soluble state during acid treatment, as previously reported, but also assist, both in vitro and in vivo, in the solubilization at neutral pH of mixed protein-chaperone aggregates formed at acidic pH, by decreasing the size of protein aggregates and the exposed hydrophobicity of aggregated proteins.

摘要

大肠杆菌的酸性应激伴侣蛋白HdeA和HdeB可防止周质蛋白在酸性pH值下聚集。我们在本报告中表明,它们还会与在酸性pH值下未能溶解的蛋白质形成混合聚集体,并使其随后在中性pH值下溶解。HdeA、HdeB以及HdeA和HdeB共同作用时,在pH 3下对蛋白质聚集体的溶解效率不断提高。它们在pH 2下对聚集体的溶解效率较低,而HdeB效率最高。周质蛋白数量增加会使越来越多的伴侣蛋白进入沉淀,这表明伴侣蛋白与其底物蛋白共同聚集。我们观察到,在HdeA和HdeB存在的情况下,蛋白质聚集体的尺寸减小,从非常高的分子量聚集体减小到100 - 5000 kDa的种类。此外,1,1'-双(4-苯胺基)萘-5,5'-二磺酸结合实验表明,在HdeA和HdeB存在的情况下,聚集蛋白的暴露疏水性显著降低。在体内,酸性应激细菌细胞在中性pH值下恢复过程中,HdeA和HdeB可使蛋白质聚集体溶解并复性,包括由麦芽糖受体MalE、寡肽受体OppA和组氨酸受体HisJ形成的聚集体。因此,HdeA和HdeB不仅如先前报道的那样有助于在酸处理过程中将蛋白质维持在可溶状态,而且在体外和体内都有助于在中性pH值下溶解在酸性pH值下形成的蛋白质-伴侣蛋白混合聚集体,通过减小蛋白质聚集体的尺寸和聚集蛋白的暴露疏水性来实现。

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