- Tel: 858.663.9055
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Email: info@nsjbio.com
- Tel: 858.663.9055
- Email: info@nsjbio.com
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Zebrafish FOXJ1 Antibody / FOXJ1A Antibody recognizes Forkhead Box J1A (FOXJ1A), a member of the forkhead family of transcription factors and a master regulator of motile ciliogenesis. FOXJ1A controls expression of numerous genes required for the assembly, differentiation, and function of motile cilia, specialized cellular structures that generate fluid flow and contribute to developmental signaling. Through regulation of cilia-associated gene networks, FOXJ1A plays a critical role in tissue organization, embryonic patterning, and organ development. The highly conserved function of FOXJ1 proteins has made zebrafish an important vertebrate model for investigating ciliogenesis and cilia-dependent biological processes.
Motile cilia are essential for a variety of developmental and physiological functions, including fluid movement, left-right axis determination, respiratory tract function, and reproductive biology. In zebrafish, FOXJ1A contributes to formation of ciliated cell populations and regulation of genes required for ciliary structure and motility. Expression of FOXJ1A is frequently examined in studies investigating cilia development, epithelial differentiation, developmental patterning, and organogenesis. Because defects in motile cilia can disrupt numerous developmental pathways, FOXJ1A serves as an important marker of ciliated cell differentiation.
FOXJ1A functions as a transcriptional regulator that coordinates complex genetic programs involved in basal body formation, axoneme assembly, and ciliary motility. Activation of FOXJ1A-dependent pathways promotes differentiation of cells capable of producing functional motile cilia. Consequently, FOXJ1A has become a widely studied target in developmental biology, cell biology, and investigations of cilia-associated disorders. Analysis of FOXJ1A expression can provide valuable insight into the molecular mechanisms governing ciliogenesis and tissue morphogenesis.
Zebrafish offer unique advantages for studying ciliary biology because many cilia-dependent developmental events can be observed directly during embryogenesis. Researchers frequently evaluate FOXJ1A expression during studies of left-right asymmetry, kidney development, neural development, epithelial differentiation, and organ formation. Because ciliary pathways are highly conserved among vertebrates, findings generated using zebrafish models often provide important insight into the mechanisms that regulate cilia formation and function.
At NSJ Bioreagents, we provide highly validated antibodies for developmental biology, cell biology, and zebrafish research. Zebrafish FOXJ1 Antibody / FOXJ1A Antibody targets a key transcriptional regulator of motile ciliogenesis and ciliated cell differentiation. FOXJ1A expression is widely studied in the context of cilia formation, developmental patterning, epithelial biology, organogenesis, and vertebrate development. Continued investigation of FOXJ1A is expanding our understanding of the molecular pathways that govern ciliary function and tissue organization.
This Zebrafish antibody is part of a broader Zebrafish / Danio rerio antibody panel offered by NSJ Bioreagents.
The optimal working dilution of the Zebrafish FOXJ1 Antibody / FOXJ1A Antibody should be determined empirically by the investigator.
An E.coli-derived Zebrafish FOXJ1A recombinant protein (amino acids K217-S338) was used as the immunogen for the Zebrafish FOXJ1 / FOXJ1A Antibody.
After reconstitution, the Zebrafish FOXJ1 / FOXJ1A Antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
Zebrafish FOXJ1A Antibody, Zebrafish Forkhead Box J1A Antibody, Zebrafish Ciliogenesis Transcription Factor Antibody, Zebrafish Motile Cilia Regulator Antibody, Zebrafish Ciliated Cell Marker Antibody, Zebrafish Forkhead Family Transcription Factor Antibody
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