Popova Antoaneta V, Hundertmark Michaela, Seckler Robert, Hincha Dirk K
Max-Planck-Institut für Molekulare Pflanzenphysiologie, Potsdam, Germany.
Biochim Biophys Acta. 2011 Jul;1808(7):1879-87. doi: 10.1016/j.bbamem.2011.03.009. Epub 2011 Apr 2.
Dehydration stress-related late embryogenesis abundant (LEA) proteins have been found in plants, invertebrates and bacteria. Most LEA proteins are unstructured in solution, but some fold into amphipathic α-helices during drying. The Pfam LEA_4 (Group 3) protein LEA7 from the higher plant Arabidopsis thaliana was predicted to be 87% α-helical, while CD spectroscopy showed it to be largely unstructured in solution and only 35% α-helical in the dry state. However, the dry protein contained 15% β-sheets. FTIR spectroscopy revealed the β-sheets to be largely due to aggregation. β-Sheet content was reduced and α-helix content increased when LEA7 was dried in the presence of liposomes with secondary structure apparently influenced by lipid composition. Secondary structure was also affected by the presence of membranes in the fully hydrated state. A temperature-induced increase in the flexibility of the dry protein was also only observed in the presence of membranes. Functional interactions of LEA7 with membranes in the dry state were indicated by its influence on the thermotropic phase transitions of the lipids and interactions with the lipid headgroup phosphates.
在植物、无脊椎动物和细菌中均发现了与脱水胁迫相关的晚期胚胎发生丰富(LEA)蛋白。大多数LEA蛋白在溶液中无特定结构,但有些在干燥过程中会折叠成两亲性α螺旋。来自高等植物拟南芥的Pfam LEA_4(第3组)蛋白LEA7预计87%为α螺旋结构,而圆二色光谱显示其在溶液中基本无特定结构,在干燥状态下仅35%为α螺旋结构。然而,干燥后的蛋白含有15%的β折叠。傅里叶变换红外光谱显示,β折叠主要是由聚集导致的。当LEA7在脂质体存在的情况下干燥时,β折叠含量降低,α螺旋含量增加,其二级结构显然受脂质组成的影响。完全水合状态下膜的存在也会影响二级结构。只有在有膜存在的情况下,才会观察到干燥蛋白因温度诱导而增加的柔韧性。LEA7在干燥状态下与膜的功能相互作用通过其对脂质热致相变的影响以及与脂质头部磷酸基团的相互作用得以体现。