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関連する概念動画

siRNA - Small Interfering RNAs02:30

siRNA - Small Interfering RNAs

18.5K
Small interfering RNAs, or siRNAs, are short regulatory RNA molecules that can silence genes post-transcriptionally, as well as the transcriptional level in some cases. siRNAs are important for protecting cells against viral infections and silencing transposable genetic elements.
In the cytoplasm, siRNA is processed from a double-stranded RNA, which comes from either endogenous DNA transcription or exogenous sources like a virus. This double-stranded RNA is then cleaved by the...
18.5K
lncRNA - Long Non-coding RNAs02:39

lncRNA - Long Non-coding RNAs

9.8K
In humans, more than 80% of the genome gets transcribed. However, only around 2% of the genome codes for proteins. The remaining part produces non-coding RNAs which includes ribosomal RNAs, transfer RNAs, telomerase RNAs, and regulatory RNAs, among other types. A large number of regulatory non-coding RNAs have been classified into two groups depending upon their length – small non-coding RNAs, such as microRNA, which are less than 200 nucleotides in length, and long non-coding RNA...
9.8K
Epigenetic Regulation01:46

Epigenetic Regulation

33.5K
Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
33.5K
Key Elements for Plant Nutrition02:35

Key Elements for Plant Nutrition

24.1K
Like all living organisms, plants require organic and inorganic nutrients to survive, reproduce, grow and maintain homeostasis. To identify nutrients that are essential for plant functioning, researchers have leveraged a technique called hydroponics. In hydroponic culture systems, plants are grown—without soil—in water-based solutions containing nutrients. At least 17 nutrients have been identified as essential elements required by plants. Plants acquire these elements from the...
24.1K
piRNA - Piwi-interacting RNAs02:57

piRNA - Piwi-interacting RNAs

7.6K
PIWI-interacting RNAs, or piRNAs, are the most abundant short non-coding RNAs. More than 20,000 genes have been found in humans that code for piRNAs while only 2000 genes have been found for miRNAs. piRNAs can act at the transcriptional and post-transcriptional levels and have a vital role in silencing transposable elements present in germ cells. They are also involved in epigenetic silencing and activation. Previously, they were thought to function only in germ cells but new evidence suggests...
7.6K
Key Techniques in Microbiology01:19

Key Techniques in Microbiology

1.9K
Aseptic techniques prevent contamination, ensure experimental accuracy, and protect researchers and microbial cultures. These techniques are essential in clinical, industrial, and research settings where sterility is required.Maintaining Sterility in Laboratory PracticesScientists maintain sterility by sterilizing tools with heat or chemicals, disinfecting work surfaces, and handling cultures in controlled environments. Working near an open flame or within a laminar flow hood reduces the risk...
1.9K

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関連する実験動画

Updated: Jan 25, 2026

Overexpressing Long Noncoding RNAs Using Gene-activating CRISPR
13:04

Overexpressing Long Noncoding RNAs Using Gene-activating CRISPR

Published on: March 1, 2019

9.3K

自己免疫疾患の主要な調節因子としての長鎖非コードRNA

Ruxiao Yang-Fischer1, Alyssa Shearer1, Sankar Ghosh1

  • 1Department of Microbiology and Immunology, Columbia University, College of Physicians and Surgeons, New York, NY, United States.

Advances in genetics
|January 23, 2026
PubMed
まとめ

長鎖非コードRNA(lncRNA)は自己免疫疾患の主要な調節因子である。このレビューは、免疫系の機能と病因におけるそれらの重要な役割を強調し、新しい研究と臨床的洞察を提供する。

科学分野:

  • 免疫学
  • 遺伝学
  • 分子生物学

背景:

  • 自己免疫疾患は、免疫系が自己組織を攻撃することを含む。
  • 遺伝的および環境的要因が自己免疫障害に寄与する。
  • 長鎖非コードRNA(lncRNA)は、遺伝子発現と免疫細胞機能を調節する。

研究 の 目的:

  • 自己免疫疾患の病因に関する文献をレビューする。
  • 免疫系および自己免疫疾患におけるlncRNAの役割を解明する。
  • 自己免疫生物学におけるlncRNA研究の最近の進歩を要約する。

主な方法:

  • 自己免疫疾患の病因に関する文献レビュー。
  • 免疫調節におけるlncRNAの役割の分析。
  • 自己免疫病因におけるlncRNAに関する最近の発見の統合。

主要な成果:

  • lncRNAは、遺伝子発現と染色体構造の重要な調節因子である。
  • lncRNAは、免疫細胞機能において多面的な役割を果たす。
  • 新たな証拠は、自己免疫病因におけるlncRNAの重要性を強調している。
キーワード:
自己免疫疾患遺伝子発現免疫系炎症長鎖非コードRNA

さらに関連する動画

Isolation of Small Noncoding RNAs from Human Serum
06:44

Isolation of Small Noncoding RNAs from Human Serum

Published on: June 19, 2014

18.5K
Author Spotlight: A Computational Pipeline for Analyzing Chimeric Noncoding RNA-Target RNA Interactions in High-Throughput Sequencing Data
07:35

Author Spotlight: A Computational Pipeline for Analyzing Chimeric Noncoding RNA-Target RNA Interactions in High-Throughput Sequencing Data

Published on: December 1, 2023

1.1K

関連する実験動画

Last Updated: Jan 25, 2026

Overexpressing Long Noncoding RNAs Using Gene-activating CRISPR
13:04

Overexpressing Long Noncoding RNAs Using Gene-activating CRISPR

Published on: March 1, 2019

9.3K
Isolation of Small Noncoding RNAs from Human Serum
06:44

Isolation of Small Noncoding RNAs from Human Serum

Published on: June 19, 2014

18.5K
Author Spotlight: A Computational Pipeline for Analyzing Chimeric Noncoding RNA-Target RNA Interactions in High-Throughput Sequencing Data
07:35

Author Spotlight: A Computational Pipeline for Analyzing Chimeric Noncoding RNA-Target RNA Interactions in High-Throughput Sequencing Data

Published on: December 1, 2023

1.1K

結論:

  • lncRNAは、免疫遺伝学におけるその重要な役割のためにますます認識されている。
  • lncRNA機能を理解することは、自己免疫疾患の研究に新たな道を提供する。
  • lncRNAは、自己免疫障害における新規臨床介入のための潜在的な標的を提示する。