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Videos de Conceptos Relacionados

Conserved Binding Sites01:49

Conserved Binding Sites

Many proteins’ biological role depends on their interactions with their ligands, small molecules that bind to specific locations on the protein known as ligand-binding sites. Ligand-binding sites are often conserved among homologous proteins as these sites are critical for protein function.
Binding sites are often located in large pockets, and if their location on a protein’s surface is unknown, it can be predicted using various approaches. The energetic method computationally analyses the...
DNA-only Transposons02:57

DNA-only Transposons

DNA-only transposons are called autonomous transposons since they code for the enzyme transposase that is required for the transposition mechanism. Insertion of transposons can alter gene functions in multiple ways. They can mutate the gene, alter gene expression by introducing a novel promoter or insulator sequence, introduce new splice sites, and change the mRNA transcripts produced, or remodel chromatin structure.
The donor site from where the transposon is excised is either degraded or...
Non-LTR Retrotransposons03:18

Non-LTR Retrotransposons

As the name suggests, non-LTR retrotransposons lack the long terminal repeats characteristic of the LTR retrotransposons. Additionally, both LTR and non-LTR retrotransposons use distinct mechanisms of mobilization. Non-LTR retrotransposons are further divided into two classes - Long interspersed nuclear elements (LINEs) and short interspersed nuclear elements (SINEs), both of which occur abundantly in most mammals, including humans. Some of the active non-LTR retrotransposons in humans are L1...
Conservative Site-specific Recombination and Phase Variation02:53

Conservative Site-specific Recombination and Phase Variation

Because the DNA segments are cut and reorganized in a direction-specific manner, site-specific recombination has emerged as an efficient genetic engineering technique. Flippase and Cyclization recombinases or Flp and Cre, respectively, are two members of the tyrosine recombinase family derived from bacteriophages, that are used to mediate site-specific DNA insertions, deletions, and targeted expression of proteins in mammalian cell lines.
The recognition sites for Cre recombinase called LoxP...
Transfer RNA Synthesis02:36

Transfer RNA Synthesis

One of the unique features of tRNA is the presence of modified bases. In some tRNAs, modified bases account for nearly 20% of the total bases in the molecule. Altogether, these unusual bases protect the tRNA from enzymatic degradation by RNases.
Each of these chemical modifications is carried by a specific enzyme, post-transcription. All of these enzymes have unique base and site-specificity. Methylation, the most common chemical modification, is carried by at least nine different enzymes, with...
tRNA Activation02:26

tRNA Activation

Aminoacyl-tRNA synthetases are present in both eukaryotes and bacteria. Though eukaryotes have 20 different aminoacyl-tRNA synthetases to couple to 20 amino acids, many bacteria do not have genes for all of these aminoacyl-tRNA synthetases. Despite this, they still use all 20 amino acids to synthesize their proteins. For instance, some bacteria do not have the gene encoding the enzyme that couples glutamine with its partner tRNA. In these organisms, one enzyme adds glutamic acid to all of the...

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Video Experimental Relacionado

Updated: May 7, 2026

Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp
10:44

Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp

Published on: June 20, 2018

Una secuencia de sitio objetivo simétrica de seis pares de bases determina la especificidad de inserción de Tn10.

S M Halling, N Kleckner

    Cell
    |January 1, 1982
    PubMed
    Resumen

    El transposón Tn10 se inserta preferentemente en el ADN bacteriano en sitios específicos. Los investigadores identificaron una secuencia de consenso de 6 pares de bases (GCTNAGC) responsable de esta especificidad de inserción.

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    Last Updated: May 7, 2026

    Single Cell Multiplex Reverse Transcription Polymerase Chain Reaction After Patch-clamp
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    Published on: October 8, 2019

    Área de la Ciencia:

    • Biología Molecular Biología Molecular
    • Genética La genética.
    • Microbiología Microbiología.

    Sus antecedentes:

    • El transposón Tn10 exhibe inserción preferente en ubicaciones cromosómicas específicas.
    • Comprender los determinantes de la secuencia de ADN de la especificidad de inserción de Tn10 es crucial para la ingeniería del genoma y el estudio de la dinámica de los transposones.

    Objetivo del estudio:

    • Para identificar la señal específica de secuencia de ADN responsable de la inserción preferencial de Tn10 en los cromosomas bacterianos.
    • Para aclarar el mecanismo de reconocimiento e inserción del sitio objetivo de Tn10.

    Principales métodos:

    • Secuenciación del ADN de 11 sitios de inserción de Tn10.
    • Análisis bioinformático para identificar motivos de secuencia comunes.
    • Comparación de secuencias de sitios de inserción con sitios conocidos de no inserción.

    Principales resultados:

    • Se identificó una secuencia de consenso simétrico de 6 pares de bases (bp) (GCTNAGC) en los puntos de inserción de Tn10.
    • Las secuencias del sitio de inserción mostraron desviaciones limitadas y definidas del consenso.
    • La secuencia de consenso y las secuencias relacionadas estaban ausentes de las regiones donde Tn10 no se inserta.
    • La secuencia de consenso se encuentra dentro del ADN objetivo de 9 bp escindido durante la inserción.

    Conclusiones:

    • La secuencia de consenso de 6 bp identificada es el principal determinante de la especificidad de inserción de Tn10.
    • La naturaleza simétrica de la secuencia y su ubicación sugieren el reconocimiento y la escisión por una sola proteína con subunidades simétricas.
    • Las interacciones proteína-ADN, probablemente a lo largo de la ranura principal, median el reconocimiento de la secuencia de ADN objetivo.