首页> 外文期刊>The Journal of Experimental Biology >Functional consequences of a gene duplication and fusion event in an arginine kinase
【24h】

Functional consequences of a gene duplication and fusion event in an arginine kinase

机译:精氨酸激酶中基因复制和融合事件的功能后果

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Arginine kinase (AK) from the foot of the razor clam Ensis directus consists of two full-length AK domains, denoted D1 and 132, fused in a single polypeptide chain. The full-length cDNA for Ensis AK was obtained and its deduced amino acid sequence was analyzed in the context of the X-ray crystal structure of a typical, monomeric AK. Both domains of Ensis AK contain most of the residues currently thought to be critical in catalysis, suggesting that both AK domains are catalytically competent. The full-length Ensis AK, a D2-NusA-His-tag fusion protein and a D2-truncated AK (enterokinase cleavage product of the fusion protein) were expressed in Escherichia coli and purified. All recombinant AK constructs displayed high enzyme activity. Attempts at expressing active D1 alone, D2 alone or a D1-NusA-His-tag fusion protein were unsuccessful. The catalytic properties of the active proteins were compared with the corresponding properties of recombinant AK from the horseshoe crab Limulus polyphemus, which is a typical monomeric AK. In contrast to expectations, the kinetic results strongly suggest that Ensis AK has only one active domain, namely D2. The K-cat values for all Ensis constructs were roughly twice that of typical AKs, indicating higher overall catalytic throughput at the competent active site. Furthermore, both the full-length and truncated D2 Ensis AKs showed no synergism of substrate binding unlike typical AKs. The D2-NusA-His-tag fusion construct actually displayed negative synergism of substrate binding, which means that, in effect, the first substrate bound acts as a competitive inhibitor of the second. The conservation of the structure of the apparently inactive D1 may be related to constraints imposed by structural changes that could potentially impact substrate binding in D2 and/or possibly influence the proper folding of the enzyme during synthesis. Overall, the results from the present study indicate that the AK contiguous dimer from Ensis directus functions with activity in only the second domain. Although lacking activity in D1, D2 appears to compensate by having a higher intrinsic catalytic throughput than typical 40-kDa monomeric AKs. [References: 44]
机译:来自剃刀蛤Ensis Directus足部的精氨酸激酶(AK)由两个全长AK域组成,分别表示为D1和132,融合在一条多肽链中。获得了Ensis AK的全长cDNA,并在典型的单体AK的X射线晶体结构的背景下分析了其推导的氨基酸序列。 Ensis AK的两个结构域均包含目前被认为对催化至关重要的大多数残基,这表明两个AK域均具有催化能力。全长Ensis AK,D2-NusA-His-tag融合蛋白和D2截短的AK(融合蛋白的肠激酶裂解产物)在大肠杆菌中表达并纯化。所有重组AK构建体均显示高酶活性。单独表达活性D1,单独D2或D1-NusA-His-tag融合蛋白的尝试均未成功。将活性蛋白的催化特性与马蹄crab多酚(一种典型的单体AK)的重组AK的相应特性进行了比较。与预期相反,动力学结果强烈表明Ensis AK仅具有一个活性域,即D2。所有Ensis构建体的K-cat值大约是典型AK的K-cat值的两倍,表明在活性活性位点上的总催化通量更高。此外,全长D2 Ensis AK和截短的D2 Ensis AK与典型AK均不显示底物结合的协同作用。 D2-NusA-His-tag融合构建体实际上显示出底物结合的负协同作用,这意味着实际上第一个底物结合充当了第二个底物的竞争性抑制剂。显然无活性的D1的结构的保守性可能与结构变化所施加的限制有关,这些变化可能潜在地影响D2中底物的结合和/或可能影响合成过程中酶的正确折叠。总体而言,本研究的结果表明,来自Ensis Directus的AK连续二聚体仅在第二域中起作用。尽管在D1中缺乏活性,但D2似乎通过比典型的40 kDa单体AK具有更高的固有催化通量来补偿。 [参考:44]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号