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相关概念视频

RNA Splicing01:32

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Splicing is the process by which eukaryotic RNA is edited before its translation into protein. The RNA strand transcribed from eukaryotic DNA is called the primary transcript. The primary transcripts that become mRNAs are called precursor messenger RNAs (pre-mRNAs). Eukaryotic pre-mRNA contains alternating sequences of exons and introns. Exons are nucleotide sequences that code for proteins, whereas introns are the non-coding regions. In RNA splicing, introns are removed and exons are bonded...
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Alternative RNA Splicing02:18

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Alternative RNA splicing is the regulated splicing of exons and introns to produce different mature mRNAs from a single pre-mRNA. Unlike in constitutive splicing where a single gene produces a single type of mRNA, alternative splicing allows an organism to produce multiple proteins from a single gene and plays an important role in protein diversity.
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The thoracic or rib cage forms the body's thorax (chest) portion. Its primary function in the body is to protect vital organs in the thoracic cavity, such as the heart and the lungs. It consists of 12 pairs of ribs with their costal cartilages and the sternum. The ribs are anchored posteriorly to the 12 thoracic vertebrae (T1-T12).
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Ribs are curved, flattened bones forming the thoracic cavity wall with the thoracic muscles. There are 12 pairs of thoracic ribs. The posterior ends of all the ribs articulate with the T1–T12 thoracic vertebrae. In contrast,the anterior ends of most ribs attach to the sternum via their costal cartilages.
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A proton M that is coupled to a proton X results in doublet signals for M. However, NMR-active nuclei can be simultaneously coupled to more than one nonequivalent nucleus. When M is coupled to a second proton A, such as in styrene oxide, each peak in the doublet is split into another doublet.
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通过使用式分离线进行近距离诱导的拼接

Josef A Gramespacher1, Antony J Burton1, Luis F Guerra1

  • 1Department of Chemistry , Princeton University , Frick Laboratory, Princeton , New Jersey 08544 , United States.

Journal of the American Chemical Society
|August 17, 2019
PubMed
概括
此摘要是机器生成的。

科学家开发了一种使用近距离触发器的条件蛋白拼接 (CPS) 的新方法. 这种技术可以精确控制细胞中的蛋白激活,为生物研究和治疗应用提供了新的可能性.

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科学领域:

  • 生物化学
  • 分子生物学
  • 细胞生物学

背景情况:

  • 自然分裂的素有助于蛋白质转接 (PTS) 的聚结合.
  • 有条件的蛋白质拼接 (CPS) 允许对蛋白质功能的翻译后控制.
  • 接近触发的CPS提供时间和空间蛋白质激活.

研究的目的:

  • 介绍使用Npu intein的第一个近距离触发CPS方法.
  • 通过各种近距离触发来证明这种方法的多功能性.
  • 在哺乳动物细胞中显示转移酶p300的局部激活.

主要方法:

  • 使用自然分裂,快速拼接的NPU因特因用于CPS.
  • 开发出多种接近触发器来启动拼接.
  • 在哺乳动物细胞中应用该系统以使目标蛋白质复制和激活.

主要成果:

  • 通过使用Npu intein成功证明了近距离触发的CPS.
  • 显示该方法与多个近距离触发器的兼容性.
  • 在哺乳动物细胞中实现了局部转酶p300的激活.

结论:

  • 使用Npu的近距离触发CPS是一种可行的技术.
  • 这种方法允许精确的局部蛋白激活.
  • 开辟了控制生物系统中的蛋白质功能的新途径.