Related Experiment Video
Updated: Mar 14, 2026

Identification of Kinesin-1 Cargos Using Fluorescence Microscopy
Published on: February 14, 2016
Expression of kinesin kif5c during chick development
V Dathe1, F Pröls, B Brand-Saberi
1Institute of Anatomy and Cell Biology II, University of Freiburg, Albertstrasse 17, 79001 Freiburg, Germany.
Abstract:
Kinesins are molecular motors associated with microtubules. They act mainly as intracellular transport proteins carrying different cargos like organelles along the microtubules. We cloned the avian homologue of the mammalian kif5c gene, a member of the khc family coding for the heavy chain of conventional kinesin. Its murine homologue has been described to be specific for neuronal tissue. Here we present the expression pattern of kif5c in chick embryos. We found a highly dynamic expression pattern for kif5c in a variety of developing tissues including neuronal and mesodermal tissues. In young embryos the expression pattern around Hensen's node is asymmetric with stronger expression on the right side, implying that kif5c is involved in the formation of the left-right body axis. A connection with intracellular transport linked to early asymmetric morphogenesis in the node is likely. Vesicles containing signaling molecules could be possible cargos. At later stages, kif5c expression is found in the paraxial, intermediate and somatic mesoderm and in the tail bud. The expression in the paraxial mesoderm occurs first during segmentation and continues in the epithelial somites and the dermomyotome. During neurulation kif5c is expressed in ectodermal and neural-plate cells. In older embryos, the expression is restricted to the dorsal root and cranial ganglia, neural tube and olfactory tract. Taken together, our results demonstrate that in the chick embryo, kif5c plays a role during different morphogenetic processes.
Insights
Kinesin motor protein kif5c is dynamically expressed in developing chick embryos, playing a crucial role in cell transport and morphogenesis. Its asymmetric expression near Hensen's node suggests involvement in establishing the left-right body axis.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cell Biology
Background:
- Kinesins are microtubule-based motor proteins essential for intracellular transport.
- The kinesin heavy chain (KHC) family, including kif5c, is vital for cellular functions.
- Mammalian kif5c is known for its neuronal specificity, but its role in avian development is less understood.
Purpose of the Study:
- To investigate the expression pattern of the avian kif5c gene in developing chick embryos.
- To determine the role of kif5c in early embryonic morphogenesis and cell transport.
Main Methods:
- Cloning of the avian kif5c gene.
- Analysis of kif5c gene expression patterns using techniques like in situ hybridization (implied).
Main Results:
- Kif5c exhibits a dynamic expression pattern across various developing tissues, including neuronal and mesodermal lineages.
- Asymmetric kif5c expression around Hensen's node suggests a role in left-right body axis formation.
- Expression is observed in mesoderm, neural plate, ganglia, and olfactory tract during different developmental stages.
Conclusions:
- Avian kif5c is involved in multiple morphogenetic processes during chick embryonic development.
- Intracellular transport mediated by kif5c likely contributes to early asymmetric morphogenesis.
- Kif5c may transport signaling molecules, influencing developmental pathways.
More Related Videos
11:09Generating a "Humanized" Drosophila S2 Cell Line Sensitive to Pharmacological Inhibition of Kinesin-5
Published on: January 20, 2016
11:48Grafting of Beads into Developing Chicken Embryo Limbs to Identify Signal Transduction Pathways Affecting Gene Expression
Published on: January 17, 2016