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Types of RNA01:23

Types of RNA

64.8K
Overview
Three main types of RNA are involved in protein synthesis: messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). These RNAs perform diverse functions and can be broadly classified as protein-coding or non-coding RNA. Non-coding RNAs play important roles in the regulation of gene expression in response to developmental and environmental changes. Non-coding RNAs in prokaryotes can be manipulated to develop more effective antibacterial drugs for human or animal use.
RNA...
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Bacterial RNA Polymerase00:43

Bacterial RNA Polymerase

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Unlike eukaryotes, bacteria use a single RNA Polymerase (RNAP) to transcribe all genes. The different subunits of bacterial RNAPhave distinct functions. The multisubunit structure of the bacterial RNAP helps the enzyme to maintain catalytic function, facilitate assembly, interact with DNA and RNA, and self-regulate its activity.
In most genes, the transcription site is a single base present upstream of the coding sequence. Though RNAP is a catalytically efficient enzyme, it does not recognize...
30.3K
Eukaryotic RNA Polymerases00:58

Eukaryotic RNA Polymerases

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RNA Polymerase (RNAP) is conserved in all animals, with bacterial, archaeal, and eukaryotic RNAPs sharing significant sequence, structural, and functional similarities. Among the three eukaryotic RNAPs, RNA Polymerase II is most similar to bacterial RNAP in terms of both structural organization and folding topologies of the enzyme subunits. However, these similarities are not reflected in their mechanism of action.
All three eukaryotic RNAPs require specific transcription factors, of which the...
24.6K
Ribosomal RNA Synthesis02:53

Ribosomal RNA Synthesis

13.4K
Ribosome synthesis is a highly complex and coordinated process involving more than 200 assembly factors. The synthesis and processing of ribosomal components occurs not only in the nucleolus but also in the nucleoplasm and the cytoplasm of eukaryotic cells.
Ribosome biogenesis begins with the synthesis of 5S and 45S pre-rRNAs by distinct RNA polymerases. The primary transcripts are extensively processed and modified before they are bound and folded by ribosomal proteins and assembly factors,...
13.4K
RNA Interference01:23

RNA Interference

26.4K
RNA interference (RNAi) is a process in which a small non-coding RNA molecule blocks the post-transcriptional expression of a gene by binding to its messenger RNA (mRNA) and preventing the protein from being translated.
This process occurs naturally in cells, often through the activity of genomically-encoded microRNAs. Researchers can take advantage of this mechanism by introducing synthetic RNAs to deactivate specific genes for research or therapeutic purposes. For example, RNAi could be used...
26.4K
Nucleic Acids02:43

Nucleic Acids

45.0K
Nucleic acids are the most important macromolecules for the continuity of life. They carry the cell's genetic blueprint and carry instructions for its functioning.
DNA and RNA
The two main types of nucleic acids are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). DNA is the genetic material in all living organisms, ranging from single-celled bacteria to multicellular mammals. It is in the nucleus of eukaryotes and in the organelles, chloroplasts, and mitochondria. In prokaryotes,...
45.0K

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Video Experimental Relacionado

Updated: Sep 9, 2025

Novel RNA-Binding Proteins Isolation by the RaPID Methodology
11:19

Novel RNA-Binding Proteins Isolation by the RaPID Methodology

Published on: September 30, 2016

9.1K

ARN circulares que se unen a las proteínas de unión al ARN

Mandakini Singh1, Kirthik Roshan1, Srinivasan Muthuswamy1

  • 1Department of Life Science, National Institute of Technology (NIT) Rourkela, Odisha, India.

Advances in experimental medicine and biology
|August 31, 2025
PubMed
Resumen

Los ARN circulares (circRNAs) interactúan con las proteínas de unión al ARN (RBPs) para regular la expresión génica y las funciones celulares. Comprender estas interacciones circRNA-RBP es clave para descifrar los mecanismos de la enfermedad.

Palabras clave:
CircRNA (en inglés)Esponjamiento de microARNEl andamio de proteínasEl RBPEl circRNA traducible

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Área de la Ciencia:

  • Biología molecular
  • La genómica
  • La bioquímica

Sus antecedentes:

  • Los ARN circulares (circRNA) son nuevos ARN no codificantes que se encuentran en los transcriptomas metazoares.
  • Los circRNA juegan un papel crítico en el desarrollo celular y en enfermedades como el cáncer y los trastornos neurodegenerativos (NDD).
  • Los circRNA funcionan interactuando con las proteínas de unión al ARN (RBPs), que regulan la expresión génica a través de diversos mecanismos.

Objetivo del estudio:

  • Describir los mecanismos recién descubiertos de las interacciones circRNA-RBP.
  • Aclarar la importancia funcional de estas interacciones en los procesos biológicos y las enfermedades.

Principales métodos:

  • Se utilizó la secuenciación de ARN de alto rendimiento para identificar los circARN.
  • El estudio se centra en los mecanismos de formación y función del complejo circRNA-RBP.
  • Análisis de las asociaciones de enfermedades relacionadas con las relaciones circRNA-RBP.

Principales resultados:

  • Los circRNA interactúan ampliamente con los RBP, influyendo en sus funciones celulares.
  • Estas interacciones modifican el funcionamiento de otros ARN y proteínas.
  • Numerosas enfermedades están asociadas con relaciones circRNA-RBP específicas.

Conclusiones:

  • Las interacciones circRNA-RBP son fundamentales para la regulación celular.
  • La investigación de estas interacciones es crucial para comprender los orígenes de las enfermedades.
  • El esclarecimiento de estos mecanismos ofrece información sobre nuevos objetivos terapéuticos.