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首页> 外文期刊>Protein Science: A Publication of the Protein Society >The structure and evolution of the murine inhibitor of carbonic anhydrase: A member of the transferrin superfamily
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The structure and evolution of the murine inhibitor of carbonic anhydrase: A member of the transferrin superfamily

机译:鼠碳酸酐酶抑制剂的结构和演变:转铁蛋白超家族的成员

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The original signature of the transferrin (TF) family of proteins was the ability to bind ferric iron with high affinity in the cleft of each of two homologous lobes. However, in recent years, new family members that do not bind iron have been discovered. One new member is the inhibitor of carbonic anhydrase (ICA), which as its name indicates, binds to and strongly inhibits certain isoforms of carbonic anhydrase. Recently, mouse ICA has been expressed as a recombinant protein in a mammalian cell system. Here, we describe the 2.4 A structure of mouse ICA from a pseudomerohedral twinned crystal. As predicted, the structure is bilobal, comprised of two a-|i domains per lobe typical of the other family members. As with all but insect TFs, the structure includes the unusual reverse /-turn in each lobe. The structure is consistent with the fact that introduction of two mutations in the N-lobe of murine ICA (mICA) (W124R and S188Y) allowed it to bind iron with high affinity. Unexpectedly, both lobes of the mICA were found in the closed conformation usually associated with presence of iron in the cleft, and making the structure most similar to diferric pig TF. Two new ICA family members (guinea pig and horse) were identified from genomic sequences and used in evolutionary comparisons. Additionally, a comparison of selection pressure (dN/dS) on functional residues reveals some interesting insights into the evolution of the TF family including that the N-lobe of lactoferrin may be in the process of eliminating its iron binding function.
机译:转铁蛋白(TF)家族蛋白质的原始特征是能够在两个同源叶的裂隙中以高亲和力结合三价铁。但是,近年来,发现了不结合铁的新家庭成员。一种新成员是碳酸酐酶(ICA)抑制剂,顾名思义,它与碳酸酐酶的某些同工型结合并强烈抑制其活性。近来,小鼠ICA已经在哺乳动物细胞系统中表达为重组蛋白。在这里,我们描述了来自伪面体孪晶的小鼠ICA 2.4 A结构。如所预测的,该结构是双叶的,每个叶由两个其他家族成员典型的a-i结构域组成。与除昆虫TF以外的所有TF一样,其结构在每个瓣中都包含异常的反转。该结构与在鼠ICA(mICA)的N瓣中引入两个突变(W124R和S188Y)使它以高亲和力结合铁这一事实是一致的。出乎意料的是,在闭合构象中发现了mICA的两个叶,通常与裂口中铁的存在相关,并使其结构与二叉猪TF最相似。从基因组序列中鉴定了两个新的ICA家族成员(豚鼠和马),并将其用于进化比较。此外,功能残基上选择压力(dN / dS)的比较揭示了TF家族进化的一些有趣见解,包括乳铁蛋白的N瓣可能正在消除其铁结合功能。

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