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相关概念视频

Inorganic Nitrogen Assimilation01:22

Inorganic Nitrogen Assimilation

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The energy released from the breakdown of the chemical bonds within nutrients can be stored either through the reduction of electron carriers or in the bonds of adenosine triphosphate (ATP). In living systems, a small class of compounds functions as mobile electron carriers, molecules that bind to and shuttle high-energy electrons between compounds in pathways. The principal electron carriers that will be considered originate from the B vitamin group and are derivatives of nucleotides; they are...
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Nitrogen is a very important element for life because it is a major constituent of proteins and nucleic acids. It is a macronutrient, and in nature, it is recycled from organic compounds and stored in the form of  ammonia, ammonium ions, nitrate, nitrite, or  nitrogen gas by many metabolic processes. Many of these metabolic processes are carried out only by prokaryotes.
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Nitrogen atoms, present in all proteins and DNA, are recycled between abiotic and biotic components of the ecosystem. However, the primary form of nitrogen on Earth is nitrogen gas, which cannot be used by most animals and plants. Thus, nitrogen gas must first be converted into a usable form by nitrogen-fixing bacteria before it can be cycled through other living organisms. The use of nitrogen-containing fertilizers and animal waste products in human agriculture has greatly influenced the...
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The nucleoid represents a structurally and functionally distinct region within prokaryotic cells, where the cell's DNA and associated proteins are housed. Unlike eukaryotic cells, prokaryotes lack a membrane-bound nucleus, and the nucleoid facilitates the organization and accessibility of the genetic material within this constraint. The DNA in most bacteria and archaea exists as a single, circular, double-stranded molecule that is highly compacted through supercoiling and interactions with...
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相关实验视频

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Protein Film Infrared Electrochemistry Demonstrated for Study of H2 Oxidation by a [NiFe] Hydrogenase
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尼芬:在酶组合,催化和进化中的一个多功能参与者.

Yilin Hu1, Markus W Ribbe2,3

  • 1Department of Molecular Biology and Biochemistry, University of California, Irvine, CA, 92697-3900, USA. yilinh@uci.edu.

Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry
|December 11, 2024
PubMed
概括

酶成分NifEN,同类于NifDK,可以将 (N2) 减少为氨 (NH3). 在组装和催化过程中,这种双重功能表明了尼芬的存在.

关键词:
会议会议会议会议会议会议会议会议会议会议催化剂是一种催化剂.进化 进化 进化 进化 进化 进化 进化一个L-集群.在M-集群.亚酸酶是一种酸酶.

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科学领域:

  • 生物化学 生物化学
  • 酶学 是一种酶学.
  • 进化生物学 进化生物学

背景情况:

  • 酶酶复合体 (NifDK) 对于生物固定至关重要.
  • 尼芬与具有类似金属中心的NifDK具有结构和序列同质性.
  • 尼芬主要以其在合成化酶辅因子中的作用而闻名.

研究的目的:

  • 审查最近关于化酶成分NifEN的研究.EN.
  • 突出尼芬在辅因子组装和催化过程中的功能性多功能性.
  • 探索NifEN对理解酶进化和工程学的能力的影响.

主要方法:

  • 对NifEN和NifDK结构和功能的比较分析.
  • 对实验研究的回顾,证明了NifEN的催化作用.
  • 对酶组分的生物信息学和进化观点.

主要成果:

  • 在环境条件下,NifEN催化了 (N2) 到氨 (NH3) 的降解.
  • 尼芬在化酶辅因子的生物合成和直接基质还原中具有双重作用.
  • 结构和序列同质性表明NifEN是NifDK的潜在进化前体.

结论:

  • 尼芬的降解N2到NH3的能力将其定位为一个合理的古老酶.
  • 尼芬的双重功能为重建酶变体提供了一个模型.
  • 了解NifEN的多功能性有助于机理学研究和异酶合成.