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相关概念视频

RNA Splicing01:32

RNA Splicing

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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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Pre-mRNA Processing: Modification of pre-mRNA Ends01:35

Pre-mRNA Processing: Modification of pre-mRNA Ends

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In eukaryotic cells, transcripts made by RNA polymerase are modified and processed before exiting the nucleus. Unprocessed RNA is called precursor mRNA or pre-mRNA to distinguish it from mature mRNA.
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a cap to the 5' end of the growing transcript. In this process, a 5' phosphate is replaced by modified guanosine that has a methyl group attached (7-methyl guanosine). This 5' cap helps...
9.1K
Alternative RNA Splicing02:18

Alternative RNA Splicing

20.9K
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.
There are five types of alternative RNA splicing that vary in the ways the pre-mRNA segments are removed or retained in the mature mRNA. The first...
20.9K
RNA Stability01:53

RNA Stability

33.2K
Intact DNA strands can be found in fossils, while scientists sometimes struggle to keep RNA intact under laboratory conditions. The structural variations between RNA and DNA underlie the differences in their stability and longevity. Because DNA is double-stranded, it is inherently more stable. The single-stranded structure of RNA is less stable but also more flexible and can form weak internal bonds. Additionally, most RNAs in the cell are relatively short, while DNA can be up to 250 million...
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MicroRNAs01:22

MicroRNAs

3.0K
MicroRNA (miRNA) are short, regulatory RNA transcribed from introns (non-coding regions of a gene) or intergenic regions (stretches of DNA present between genes). Several processing steps are required to form biologically active, mature miRNA. The initial transcript, called primary miRNA (pri-mRNA), base-pairs with itself, forming a stem-loop structure. Within the nucleus, an endonuclease enzyme, called Drosha, shortens the stem-loop structure into hairpin-shaped pre-miRNA. After the pre-miRNA...
3.0K
pre-mRNA Processing02:01

pre-mRNA Processing

52.5K
In eukaryotic cells, transcripts made by RNA polymerase are modified and processed before exiting the nucleus. Unprocessed RNA is called precursor mRNA or pre-mRNA to distinguish it from mature mRNA.
Once about 20-40 ribonucleotides have been joined together by RNA polymerase, a group of enzymes adds a “cap” to the 5’ end of the growing transcript. In this process, a 5’ phosphate is replaced by modified guanosine that has a methyl group attached to it (7-Methyl...
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相关实验视频

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A Reporter Assay to Analyze Intronic microRNA Maturation in Mammalian Cells
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A Reporter Assay to Analyze Intronic microRNA Maturation in Mammalian Cells

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在哺乳动物细胞中表达的mRNA转录变异.

Yashica Sharma1, Kevin Vo1, Sharmin Shila1

  • 1Department of Pathology and Laboratory Medicine, University of Kansas Medical Center, Kansas City, KS 66160, USA.

International journal of molecular sciences
|February 13, 2025
PubMed
概括

哺乳动物的基因产生多个信使RNA (mRNA) 转录变体,而不是一个. 这些变异扩大了蛋白质的多样性,调节了基因表达,影响了健康和疾病.

关键词:
基因组RNA的修改 基因组RNA的改变替代的多亚脱位是多亚脱位.替代性拼接是一种替代性的拼接.对mRNAs进行转录后处理.转录开始站点

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Identification of Alternative Splicing and Polyadenylation in RNA-seq Data
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科学领域:

  • 分子生物学分子生物学
  • 遗传学 是一个遗传学.
  • 细胞生物学 细胞生物学

背景情况:

  • 传统研究假设一个基因产生一个mRNA.
  • 哺乳动物细胞表现出复杂的基因表达,单个基因产生多个转录变异.
  • 转录变异来自替代转录起点和前体mRNA (pre-mRNA) 的转录后处理.

研究的目的:

  • 更新对哺乳动物细胞中转录变异的理解.
  • 探索转录变异的分子基础,形成机制和生物作用.
  • 突出研究转录复杂性在基因调节,健康和疾病中的重要性.

主要方法:

  • 对产生转录多样性的分子机制的审查,包括替代拼接和RNA编辑.
  • 分析转录变异在蛋白质功能,非编码RNA调节和细胞过程中的作用.
  • 检查不同细胞类型和生物条件中的转录变异表达模式.

主要成果:

  • 单个基因可以产生多样化的转录变异,从而产生多种蛋白质或非编码RNA.
  • 转录变异有助于功能多样性,细胞分化,发育和衰老.
  • 异常的转录变异与疾病病原发生有关.

结论:

  • 了解转录变异对于破译复杂的基因调节至关重要.
  • 研究转录变异提供了对正常宿主生物学和疾病机制的见解.
  • 这种知识可以识别各种疾病的新治疗点.