Sales K, Brandt W, Rumbak E, Lindsey G
Department of Biochemistry, University of Cape Town, Private Bag, Rondebosch, South Africa.
Biochim Biophys Acta. 2000 Feb 15;1463(2):267-78. doi: 10.1016/s0005-2736(99)00215-1.
The LEA-like protein HSP 12 was identified as having a plasma membrane location in yeast. Gold particles, indicative of the presence of HSP 12, were observed on the external side of the plasma membrane when yeast grown to stationary phase were subjected to immunocytochemical analysis. Growth of yeast in the osmolyte mannitol resulted in an increased number of gold particles that were now observed to be present on both sides of the plasma membrane. No gold particles were observed using a mutant strain of the same yeast that did not express HSP 12. A model liposome system encapsulating the fluorescent dye calcein was used to investigate the protection by HSP 12 of membranes during desiccation. HSP 12 was found to act in an analogous manner to trehalose and protect liposomal membrane integrity against desiccation. The interaction between HSP 12 and the liposomal membrane was judged to be electrostatic as membrane protection was only observed with positively charged liposomes and not with either neutral or negatively charged liposomes. The ability of the wild-type and mutant yeast to grow in media containing ethanol was compared. It was found that yeast not expressing the HSP 12 protein were less able to grow in media containing ethanol. HSP 12 was shown to confer increased integrity on the liposomal membrane in the presence of ethanol. Ethanol, like mannitol, was found to induce HSP 12 protein synthesis. However, yeast grown in both ethanol and mannitol showed a decreased HSP 12 response compared with yeast grown in the presence of either osmolyte alone.
类似胚胎发育晚期丰富蛋白的热休克蛋白12(HSP 12)被确定在酵母中定位于质膜。当处于稳定期生长的酵母进行免疫细胞化学分析时,在质膜外侧观察到了指示HSP 12存在的金颗粒。酵母在渗透剂甘露醇中生长导致金颗粒数量增加,此时在质膜两侧均观察到金颗粒。使用同一酵母的不表达HSP 12的突变株未观察到金颗粒。使用包裹荧光染料钙黄绿素的模型脂质体系统来研究HSP 12在干燥过程中对膜的保护作用。发现HSP 12的作用方式与海藻糖类似,可保护脂质体膜完整性免受干燥影响。判断HSP 12与脂质体膜之间的相互作用为静电作用,因为仅在带正电荷的脂质体中观察到膜保护作用,而在中性或带负电荷的脂质体中未观察到。比较了野生型和突变型酵母在含乙醇培养基中的生长能力。发现不表达HSP 12蛋白的酵母在含乙醇培养基中的生长能力较弱。结果表明,在有乙醇存在的情况下,HSP 12可使脂质体膜的完整性增强。与海藻糖一样,发现乙醇可诱导HSP 12蛋白合成。然而,与仅在一种渗透剂存在下生长的酵母相比,在乙醇和甘露醇中生长的酵母显示出HSP 12反应降低。