Delmas F, Pierre F, Coucheney F, Divies C, Guzzo J
Laboratoire de Microbiologie UMR. INRA-Université, ENSBANA, Dijon, France.
J Mol Microbiol Biotechnol. 2001 Oct;3(4):601-10.
The small heat shock protein (smHSP) family has been extensively studied in eukaryotic cells. SmHSP assemble into large multimeric structures and possess chaperone activity that can prevent protein aggregation in vitro. Few studies on prokaryotic smHSP are actually available and no smHSP from lactic acid bacteria has been characterized at a biochemical level to date. Here we report on the Lo18 membrane-associated smHSP from the lactic acid bacterium Oenococcus oeni. Using size exclusion chromatography, nondenaturing pore-exclusion PAGE and in vitro and in vivo cross-linking experiments, the multimeric structure of Lol8 from O. oeni or expressed in Escherichia coli was investigated. In vitro, Lo18 is able to form a trimer and a higher oligomer which could be a dodecamer. Experiments strongly suggest that the same structures exist in vivo. First, Lo18 prevented thermal aggregation of citrate synthase and lactate dehydrogenase even at 60degreesC. These findings showed that the prokaryotic smHSP Lo18 can function as a molecular chaperone in vitro. Second, Lo18 did not protect lactate dehydrogenase from thermal inactivation and did not assist in enzymatic activity restoration after thermal aggregation, suggesting that other components may be needed for the refolding of the enzyme in an active conformation. Third, we showed that membrane association of Lo18 depends on the temperature upshift. Moreover, expression of this smHSP was induced by administration of a membrane fluidiser, the benzyl alcohol, suggesting that Lo18 expression could be regulated by the level of membrane fluidity.
小热休克蛋白(smHSP)家族已在真核细胞中得到广泛研究。SmHSP组装成大型多聚体结构,并具有伴侣活性,能够在体外防止蛋白质聚集。目前关于原核生物smHSP的研究实际上很少,迄今为止,尚未在生化水平上对来自乳酸菌的smHSP进行表征。在此,我们报道了来自乳酸酒球菌的Lo18膜相关小热休克蛋白。使用尺寸排阻色谱、非变性孔径排阻PAGE以及体外和体内交联实验,研究了来自酒球菌或在大肠杆菌中表达的Lol8的多聚体结构。在体外,Lo18能够形成三聚体和更高的寡聚体,可能是十二聚体。实验有力地表明体内存在相同的结构。首先,即使在60℃时,Lo18也能防止柠檬酸合酶和乳酸脱氢酶的热聚集。这些发现表明原核生物smHSP Lo18在体外可作为分子伴侣发挥作用。其次,Lo18不能保护乳酸脱氢酶免受热失活,也不能在热聚集后协助恢复酶活性,这表明酶折叠成活性构象可能需要其他成分。第三,我们表明Lo18的膜结合取决于温度升高。此外,这种小热休克蛋白的表达是由膜流化剂苄醇诱导的,这表明Lo18基因的表达可能受膜流动性水平的调节。