Klf4 Klf5 Smad1

Klf4, Klf5, and Smad1 are transcription factors that regulate gene expression and influence cell identity, proliferation, and differentiation in biological systems. KLF4 and KLF5 bind specific DNA sequences through zinc-finger domains, while SMAD1 is activated downstream of bone morphogenetic protein signaling and partners with other factors to control target-gene transcription. Studying their coordinated activity helps clarify how signaling pathways are converted into changes in cellular behavior, including stem-cell maintenance, lineage commitment, and tissue development. These factors are therefore important in developmental biology, regenerative research, and investigations of diseases involving abnormal growth or differentiation.

Klf4 Klf5 Smad1 - Related Videos

Research

JoVE Journal - Biology
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Generating iPS Cells from MEFS through Forced Expression of Sox-2, Oct-4, c-Myc, and Klf4

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Cited by 41 •

2008

This video shows the procedure for generating induced pluripotent stem cells using inducible lentivirus that express Oct4, Sox2, c-Myc and Klf4.

Research

JoVE Journal - Biology

Improved Swiss-rolling Technique for Intestinal Tissue Preparation for Immunohistochemical and Immunofluorescent Analyses

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Cited by 166 •

2016

Accurate identification and location of epithelial cells along the intestinal mucosal lining are essential to define different cell lineages. Proper imaging of intestinal tissues is crucial for identification of protein expression patterns with maximum resolution. This study aims to delineate the optimal methods and conditions for processing mouse intestinal tissues.

Education

JoVE Science Education - Advanced Biology

Induced Pluripotency

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2023

Induced pluripotent stem cells (iPSCs) are somatic cells that have been genetically reprogrammed to form undifferentiated stem cells. Like embryonic stem cells, iPSCs can be grown in culture conditions that promote differentiation into different cell types. Thus, iPSCs may provide a potentially unlimited source of any human cell type, which is a major breakthrough in the field of regenerative medicine. However, more research into the derivation and differentiation of iPSCs is still needed to...

Generation of Integration-free Induced Pluripotent Stem Cells from Human Peripheral Blood Mononuclear Cells Using Episomal Vectors

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Cited by 17 •

2017

This protocol describes a detailed method for efficient generation of integration-free iPSCs from human adult peripheral blood cells. With the use of four oriP/EBNA-based episomal vectors to express the reprogramming factors, KLF4, MYC, BCL-XL, or OCT4 and SOX2, thousands of iPSC colonies can be obtained from 1 mL of peripheral blood.

Induced Pluripotent Stem Cell Generation from Blood Cells Using Sendai Virus and Centrifugation

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Cited by 16 •

2016

We propose a protocol for reprogramming peripheral blood mononuclear cells (PBMCs) into induced pluripotent stem cells (iPSCs). By plating the transduced blood cells onto matrix-coated plates with centrifugation, iPSCs are successfully induced from floating cells. This technique suggests a simple and effective reprogramming protocol for cells such as PBMCs and CBMCs.

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