French-Pacheco Leidys, Cuevas-Velazquez Cesar L, Rivillas-Acevedo Lina, Covarrubias Alejandra A, Amero Carlos
Centro de Investigaciones Químicas, IICBA, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, Mexico.
Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, Mexico.
PeerJ. 2018 Jun 7;6:e4930. doi: 10.7717/peerj.4930. eCollection 2018.
Late embryogenesis abundant (LEA) proteins accumulate in plants during adverse conditions and their main attributed function is to confer tolerance to stress. One of the deleterious effects of the adverse environment is the accumulation of metal ions to levels that generate reactive oxygen species, compromising the survival of cells. AtLEA4-5, a member of group 4 of LEAs in , is an intrinsically disordered protein. It has been shown that their -terminal region is able to undergo transitions to partially folded states and prevent the inactivation of enzymes. We have characterized metal ion binding to AtLEA4-5 by circular dichroism, electronic absorbance spectroscopy (UV-vis), electron paramagnetic resonance, dynamic light scattering, and isothermal titration calorimetry. The data shows that AtLEA4-5 contains a single binding site for Ni(II), while Zn(II) and Cu(II) have multiple binding sites and promote oligomerization. The Cu(II) interacts preferentially with histidine residues mostly located in the C-terminal region with moderate affinity and different coordination modes. These results and the lack of a stable secondary structure formation indicate that an ensemble of conformations remains accessible to the metal for binding, suggesting the formation of a fuzzy complex. Our results support the multifunctionality of LEA proteins and suggest that the C-terminal region of AtLEA4-5 could be responsible for antioxidant activity, scavenging metal ions under stress conditions while the -terminal could function as a chaperone.
晚期胚胎发生丰富(LEA)蛋白在植物处于逆境条件时积累,其主要功能是赋予植物抗逆性。逆境环境的有害影响之一是金属离子积累到产生活性氧的水平,从而危及细胞存活。拟南芥LEA4-5是拟南芥中LEA第4组的成员,是一种内在无序蛋白。研究表明,其N端区域能够转变为部分折叠状态并防止酶失活。我们通过圆二色性、电子吸收光谱(紫外可见)、电子顺磁共振、动态光散射和等温滴定量热法对金属离子与拟南芥LEA4-5的结合进行了表征。数据表明,拟南芥LEA4-5含有一个Ni(II)结合位点,而Zn(II)和Cu(II)有多个结合位点并促进寡聚化。Cu(II)优先与主要位于C端区域的组氨酸残基以中等亲和力和不同配位模式相互作用。这些结果以及缺乏稳定二级结构的形成表明,金属仍可与一系列构象结合,这表明形成了一种模糊复合物。我们的结果支持了LEA蛋白的多功能性,并表明拟南芥LEA4-5的C端区域可能负责抗氧化活性,在胁迫条件下清除金属离子,而N端可能起伴侣作用。