College of Life Sciences, Jilin Agricultural University, Changchun 130118, China.
CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun 666303, China.
Int J Mol Sci. 2023 Dec 28;25(1):398. doi: 10.3390/ijms25010398.
Glutathione transferases (GSTs) are a superfamily of dimeric proteins associated with the detoxification of various reactive electrophiles and responsive to a multitude of stressors. We individually substituted Lys64 and Glu78 with Ala using site-directed mutagenesis to understand the role of subunit interactions in the structure and enzymatic properties of a rice GST (OsGSTU17). The wild-type OsGSTU17 lost the conserved hydrogen bond between subunits in tau class GSTs due to conserved Tyr92 replaced with Phe92, but still exhibited high substrate activities, and thermal stability remained in its dimeric structure. The significant decrease in thermal stability and obvious changes in the structure of mutant K64A implied that conserved Lys64 might play an essential role in the structural stability of tau class GSTs. The mutant E78A, supposed to be deprived of hydrogen and salt bonds between subunits, appeared in the soluble form of dimers, even though its tertiary structure altered and stability declined dramatically. These results suggest that the hydrogen and ionic bonds provided by conserved residues are not as important for OsGSTU17 dimerization and enzymatic properties. These results further supplement our understanding of the relationship between the structure and function of GSTs and provide a theoretical basis for improving crop resistance through targeted modification of GSTs.
谷胱甘肽转移酶(GSTs)是与各种反应性亲电试剂解毒相关的二聚体蛋白超家族,对多种应激原具有响应能力。我们使用定点突变分别将 Lys64 和 Glu78 突变为 Ala,以了解亚基相互作用在水稻 GST(OsGSTU17)结构和酶学性质中的作用。由于保守的 Tyr92 被 Phe92 取代,野生型 OsGSTU17 失去了 tau 类 GST 中亚基之间保守的氢键,但仍表现出高底物活性,并且其二聚体结构的热稳定性仍然存在。突变体 K64A 的热稳定性显著降低,结构明显变化,表明保守的 Lys64 可能在 tau 类 GSTs 的结构稳定性中发挥重要作用。突变体 E78A 可能由于亚基之间缺乏氢键和盐键,以二聚体可溶性形式出现,尽管其三级结构发生变化,稳定性显著下降。这些结果表明,保守残基提供的氢键和离子键对于 OsGSTU17 的二聚化和酶学性质并不是那么重要。这些结果进一步补充了我们对 GSTs 结构与功能关系的理解,并为通过靶向修饰 GSTs 提高作物抗性提供了理论依据。