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相关概念视频

Canonical Wnt Signaling Pathway02:54

Canonical Wnt Signaling Pathway

10.7K
The gene encoding the main signaling molecules of the Wnt signaling pathways (the Wnt proteins) was discovered almost four decades ago by Nüsslein-Volhard and Wieschaus. They identified and originally named the gene "wingless" (wg) after a phenotype discovered during their landmark genetic screen in Drosophila for body pattern defects. At around the same time, another researcher named Harold Varmus found that a murine tumor virus activates the mammalian wg homolog, Int-1, which...
10.7K
Non-Canonical Wnt Signaling Pathways01:41

Non-Canonical Wnt Signaling Pathways

8.5K
Wnt is a zygotic effect gene that is expressed during very early embryonic development. It regulates various processes in animals starting from early development through the adult stage, such as organogenesis in the embryo and maintenance of neuronal and blood stem cells. Wnt proteins can induce a wide variety of intracellular pathways depending upon the specific abilities of different Wnt ligands to form a complex with shared and cognate receptors in the presence of different co-receptors. The...
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MicroRNAs01:22

MicroRNAs

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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...
24.2K
MicroRNAs01:22

MicroRNAs

4.0K
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...
4.0K
Protein Networks02:26

Protein Networks

4.6K
An organism can have thousands of different proteins, and these proteins must cooperate to ensure the health of an organism. Proteins bind to other proteins and form complexes to carry out their functions. Many proteins interact with multiple other proteins creating a complex network of protein interactions.
These interactions can be represented through maps depicting protein-protein interaction networks, represented as nodes and edges. Nodes are circles that are representative of a protein,...
4.6K
Energy to Drive Translocation01:37

Energy to Drive Translocation

2.9K
Mitochondrial protein import is powered by two distinct energy sources: ATP hydrolysis and electrochemical potential across the inner membrane. Newly synthesized precursors are bound by cytosolic chaperones of the Hsp70 family, which guide them to the import receptors on the mitochondrial surface. Utilizing the energy of ATP hydrolysis, Hsp70 chaperones transfer these precursors to the TOM receptors on the mitochondrial outer membrane.
Generally, polypeptides are unfolded by two distinct...
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相关实验视频

Updated: Feb 7, 2026

Using Confocal Analysis of Xenopus laevis to Investigate Modulators of Wnt and Shh Morphogen Gradients
08:10

Using Confocal Analysis of Xenopus laevis to Investigate Modulators of Wnt and Shh Morphogen Gradients

Published on: December 14, 2015

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微RNA网络驱动骨衰老和WNT途径调制

David Achudhan, David Monroe, Mrunal K Dehankar

    bioRxiv : the preprint server for biology
    |February 6, 2026
    PubMed
    概括

    细胞衰老驱动骨的衰老. 这项研究确定了参与骨老化的关键微RNA (miR),包括调节WNT通路的miR-183-5p和影响衰老的miR-155-5p. 一种sclerostin抗体调节了这些miRs.

    科学领域:

    • 生物遗传学 生物遗传学
    • 骨生物学 骨生物学
    • 分子生物学分子生物学

    背景情况:

    • 细胞衰老是骨衰老的一个重要因素,在正常衰老和放射治疗等加速条件下观察到.
    • 骨细胞,关键的骨细胞,由于其寿命和丰富性,在骨衰老中发挥作用.

    研究的目的:

    • 识别与骨衰老相关的常见差异调节的微RNA (miRs) 在生理和辐射诱导的环境中.
    • 研究特定miRs,包括miR-183-5p (WNT通路) 和miR-155-5p (SASP) 在骨衰老中的作用.
    • 探索一种斯克莱洛斯抗体 (Scl-Ab) 对老化骨中的miR调节和WNT通路活性的影响.

    主要方法:

    • 微RNA (miR) 测序在小鼠的年轻与老大腿部,焦点辐射与非辐射大腿部,年轻与老骨细胞进行.
    • 用中和性抗体对斯克莱罗斯 (Scl-Ab) 来评估WNT通路和与衰老相关的基因表达.
    • 在Scl-Ab治疗小鼠的辐射骨上进行了miR测序.

    主要成果:

    • 在老化骨模型中,miR-135a-5p和miR-671-5p通常是下调的.
    • miR-183-5p是唯一常见的上调 miR,调节 WNT 途径.
    • 与衰老相关的分泌表现型 (SASP) 相关的miR-155-5p在两个条件下升高.

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    Studying Wnt Signaling During Patterning of Conducting Airways
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    Last Updated: Feb 7, 2026

    Using Confocal Analysis of Xenopus laevis to Investigate Modulators of Wnt and Shh Morphogen Gradients
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    Published on: December 14, 2015

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    Studying Wnt Signaling During Patterning of Conducting Airways
    13:00

    Studying Wnt Signaling During Patterning of Conducting Airways

    Published on: October 16, 2016

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  • 在Scl-Ab治疗下调 miR-133a-3p,而 miR-133a-3p在辐射诱导的骨衰老中上调.
  • 结论:

    • 特定的miRs,如miR-183-5p和miR-155-5p,是骨衰老的关键调节者.
    • 使用Scl-Ab对WNT通路的调节会影响miR的表达,并可能影响骨衰老.
    • 该研究确定了减轻骨衰老及其相关病理的潜在治疗点.