首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >Comparison of epsilon- and delta-class glutathione S-transferases: the crystal structures of the glutathione S-transferases DmGSTE6 and DmGSTE7 from Drosophila melanogaster
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Comparison of epsilon- and delta-class glutathione S-transferases: the crystal structures of the glutathione S-transferases DmGSTE6 and DmGSTE7 from Drosophila melanogaster

机译:ε类和δ类谷胱甘肽S转移酶的比较:果蝇中谷胱甘肽S转移酶DmGSTE6和DmGSTE7的晶体结构

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摘要

Cytosolic glutathione transferases (GSTs) comprise a large family of enzymes with canonical structures that diverge functionally and structurally among mammals, invertebrates and plants. Whereas mammalian GSTs have been characterized extensively with regard to their structure and function, invertebrate GSTs remain relatively unstudied. The invertebrate GSTs do, however, represent potentially important drug targets for infectious diseases and agricultural applications. In addition, it is essential to fully understand the structure and function of invertebrate GSTs, which play important roles in basic biological processes. Invertebrates harbor delta- and epsilon-class GSTs, which are not found in other organisms. Drosophila melanogaster GSTs (DmGSTs) are likely to contribute to detoxication or antioxidative stress during development, but they have not been fully characterized. Here, the structures of two epsilon-class GSTs from Drosophila, DmGSTE6 and DmGSTE7, are reported at 2.1 and 1.5 Å resolution, respectively, and are compared with other GSTs to identify structural features that might correlate with their biological functions. The structures of DmGSTE6 and DmGSTE7 are remarkably similar; the structures do not reveal obvious sources of the minor functional differences that have been observed. The main structural difference between the epsilon- and delta-class GSTs is the longer helix (A8) at the C-termini of the epsilon-class enzymes.
机译:胞质谷胱甘肽转移酶(GST)包含一大类具有典型结构的酶,这些结构在哺乳动物,无脊椎动物和植物之间在功能和结构上均存在差异。尽管哺乳动物GST的结构和功能已得到广泛表征,但无脊椎动物GST仍未得到研究。但是,无脊椎动物GST确实代表了传染病和农业应用的潜在重要药物靶标。此外,必须充分了解无脊椎动物GST的结构和功能,它们在基本生物学过程中起着重要作用。无脊椎动物具有其他生物中未发现的δ级和ε级GST。果蝇GSTs(DmGSTs)可能在发育过程中导致脱毒或抗氧化应激,但尚未完全表征。在这里,果蝇的两个ε级GST的结构分别以2.1和1.5Å的分辨率报道,并与其他GST进行比较,以确定可能与其生物学功能相关的结构特征。 DmGSTE6和DmGSTE7的结构非常相似。这些结构并未揭示明显的微小功能差异的来源。 ε类和δ类GST之间的主要结构差异是ε类酶C末端的较长螺旋(A8)。

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