UMR PAM-équipe VALMIS, IUVV, Dijon, France.
Biochem J. 2012 May 15;444(1):97-104. doi: 10.1042/BJ20120066.
The ability of the small Hsp (heat-shock protein) Lo18 from Oenococcus oeni to modulate the membrane fluidity of liposomes or to reduce the thermal aggregation of proteins was studied as a function of the pH in the range 5-9. We have determined by size-exclusion chromatography and analytical ultracentrifugation that Lo18 assembles essentially as a 16-mer at acidic pH. Its quaternary structure evolves to a mixture of lower molecular mass oligomers probably in dynamic equilibrium when the pH increases. The best Lo18 activities are observed at pH 7 when the particle distribution contains a major proportion of dodecamers. At basic pH, particles corresponding to a dimer prevail and are thought to be the building blocks leading to oligomerization of Lo18. At acidic pH, the dimers are organized in a double-ring of stacked octamers to form the 16-mer as shown by the low-resolution structure determined by electron microscopy. Experiments performed with a modified protein (A123S) shown to preferentially form dimers confirm these results. The α-crystallin domain of Methanococcus jannaschii Hsp16.5, taken as a model of the Lo18 counterpart, fits with the electron microscopy envelope of Lo18.
小热休克蛋白(Hsp)Lo18 来自酒球菌,能够调节脂质体的膜流动性或减少蛋白质的热聚集,我们研究了其在 pH5-9 范围内的功能。我们通过大小排阻层析和分析超速离心确定,Lo18 在酸性 pH 下主要组装成 16 聚体。当 pH 增加时,其四级结构演变为可能处于动态平衡的低分子量寡聚物混合物。当 pH 为 7 时,Lo18 的最佳活性观察到,此时颗粒分布中主要包含十二聚体。在碱性 pH 下,二聚体占主导地位,并且被认为是导致 Lo18 寡聚化的构建块。在酸性 pH 下,如电子显微镜确定的低分辨率结构所示,二聚体组织成双环堆叠的八聚体以形成 16 聚体。用一种显示优先形成二聚体的修饰蛋白(A123S)进行的实验证实了这些结果。Methanococcus jannaschii Hsp16.5 的α-晶体蛋白结构域被用作 Lo18 对应物的模型,与 Lo18 的电子显微镜包络相匹配。