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Conservation of Protein Domains Over Different Proteins02:26

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Protein domains are small structurally independent units that are part of a single amino acid chain.  Although these domains are often structurally independent, they may rely on synergistic effects to perform their functions as part of a larger protein. Protein domains may be conserved within the same organism, as well as across different organisms.
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Small population sizes put a species at extreme risk of extinction due to a lack of variation, and a consequent decrease in adaptability. This weakens the chances of survival under pressures such as climate change, competition from other species, or new diseases. Large populations are more likely to survive pressures such as these, as such populations are more likely to harbor individuals that have genetic variants that are adaptive under new stresses. Small populations are much less...
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Non-conservative forces are dissipative forces such as friction or air resistance. These forces take energy away from a system as it progresses. Unlike conservative forces, non-conservative forces do not have potential energy associated with them. This is because the energy is lost to the system and cannot be turned into useful work later.
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進化的に保存された偽キナーゼによるタンパク質AMPylation

Anju Sreelatha1, Samantha S Yee1, Victor A Lopez1

  • 1Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

Cell
|October 2, 2018
PubMed
まとめ

かつて非活性と考えられていた偽キナゼは,AMPをタンパク質に転送することができます. セレノプロテイン-O (SelO) は,このAMPylation活性を示し,酸化ストレスに対する細胞反応に不可欠です.

キーワード:
SELENOO についてアデニル化グルタレドキシングルタチオニル化キナーゼ構造酸化ストレスセレノシステイン

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科学分野:

  • 生物化学
  • 分子生物学
  • 細胞生物学

背景:

  • タンパク質キナーゼは重要な酵素ですが,触媒残留物がないため,約10%が偽キナーゼに分類されます.
  • プセドキナーゼは主に触媒的に不活性と考えられ,その既知の機能的役割が制限された.

研究 の 目的:

  • 保存されたセレノプロテイン-O (SelO) の機能的活性を調べる.
  • 擬似キナーゼの定式キナーゼ機能を超えた潜在的な酵素活性を探求する.

主な方法:

  • セルロースの構造的基礎を決定するX線結晶学.
  • タンパク質基板へのAMP移転を実証するインビトロ検査
  • 細胞局所化研究と酸化ストレス反応におけるSelOの役割の分析.

主要な成果:

  • SelOは,AMPをATPから,タンパク質基板上のSer,Thr,およびTyrの残留物に移行させ,この過程をAMPylationと呼びます.
  • 結晶構造は,ATP結合部位が変化したキナーゼのような折りたたみを示し,触媒メカニズムを説明します.
  • SelOはミトコンドリアに局所化し,細胞防衛における役割を示し,レドックスホメオスタシスを調節するタンパク質をAMPylateする.

結論:

  • SelOによって例示される偽キナーゼは,AMPylationのような新しいトランスファーゼ活動を有する.
  • AMPylationは,潜在的に広範囲にわたる翻訳後の改変である.
  • SelOの活動は,細胞の酸化ストレスへの適応に不可欠であり,機能性酵素としてシドキナーゼを強調する.