...
首页> 外文期刊>Journal of Molecular Biology >Crystal structure of the first plant urease from jack bean: 83 years of journey from its first crystal to molecular structure.
【24h】

Crystal structure of the first plant urease from jack bean: 83 years of journey from its first crystal to molecular structure.

机译:千斤豆中第一种植物脲酶的晶体结构:从其第一个晶体到分子结构的83年历程。

获取原文
获取原文并翻译 | 示例
           

摘要

Urease, a nickel-dependent metalloenzyme, is synthesized by plants, some bacteria, and fungi. It catalyzes the hydrolysis of urea into ammonia and carbon dioxide. Although the amino acid sequences of plant and bacterial ureases are closely related, some biological activities differ significantly. Plant ureases but not bacterial ureases possess insecticidal properties independent of its ureolytic activity. To date, the structural information is available only for bacterial ureases although the jack bean urease (Canavalia ensiformis; JBU), the best-studied plant urease, was the first enzyme to be crystallized in 1926. To better understand the biological properties of plant ureases including the mechanism of insecticidal activity, we initiated the structural studies on some of them. Here, we report the crystal structure of JBU, the first plant urease structure, at 2.05 A resolution. The active-site architecture of JBU is similar to that of bacterial ureases containing a bi-nickel center. JBU has a bound phosphate and covalently modified residue (Cys592) by beta-mercaptoethanol at its active site, and the concomitant binding of multiple inhibitors (phosphate and beta-mercaptoethanol) is not observed so far in bacterial ureases. By correlating the structural information of JBU with the available biophysical and biochemical data on insecticidal properties of plant ureases, we hypothesize that the amphipathic beta-hairpin located in the entomotoxic peptide region of plant ureases might form a membrane insertion beta-barrel as found in beta-pore-forming toxins.
机译:脲酶是一种镍依赖性金属酶,由植物,某些细菌和真菌合成。它催化尿素水解成氨和二氧化碳。尽管植物和细菌脲酶的氨基酸序列密切相关,但某些生物学活性却存在显着差异。植物脲酶而不是细菌脲酶具有杀虫特性,而与它的尿素分解活性无关。迄今为止,结构信息仅适用于细菌尿素酶,尽管研究最深入的植物尿素酶杰克豆尿素酶(Canavalia ensiformis; JBU)是第一种在1926年结晶的酶。为更好地了解植物尿素酶的生物学特性,包括杀虫活性的机理,我们对其中一些进行了结构研究。在这里,我们报道了首个植物脲酶结构JBU的晶体结构,其分辨率为2.05A。 JBU的活性位点结构类似于含有双镍中心的细菌脲酶。 JBU在其活性位点具有被β-巯基乙醇结合的磷酸盐和经共价修饰的残基(Cys592),到目前为止,在细菌脲酶中还没有观察到多种抑制剂(磷酸盐和β-巯基乙醇)的伴随结合。通过将JBU的结构信息与有关植物脲酶杀虫特性的可用生物物理和生化数据相关联,我们假设位于植物脲酶的肠毒素肽区域的两亲性β-发夹可能会形成膜插入物β-桶-形成孔的毒素。

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