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Genetic Manipulation of the Mouse Developing Hypothalamus through In utero Electroporation
Published on: July 24, 2013
PRUNE and NM23-M1 expression in embryonic and adult mouse brain
Pietro Carotenuto1, Natascia Marino, Anna Maria Bello
1CEINGE, Biotecnologie Avanzate Scarl, Via Comunale Margherita 482, 80145, Naples, Italy.
Abstract:
A genetic interaction between PRUNE and NM23/NDPK has been postulated in Drosophila melanogaster. Many have focused on Drosophila for the genetic combination between PRUNE "knock down" and AWD/NM23 fly mutants bearing the P97S mutation (K-pn, Killer of PRUNE mutation). We postulated a role for PRUNE-NM23 interactions in vertebrate development, demonstrating a physical interaction between the human PRUNE and NM23-H1 proteins, and partially characterizing their functional significance in cancer progression. Here, we present an initial analysis towards the functional characterization of the PRUNE-NM23 interaction during mammalian embryogenesis. Our working hypothesis is that PRUNE, NM23-H1 and their protein-protein interaction partners have important roles in mammalian brain development and adult brain function. Detailed expression analyses from early mouse brain development to adulthood show significant co-expression of these two genes during embryonic stages of brain development, especially focusing on the cortex, hippocampus, midbrain and cerebellum. We hypothesize that their abnormal expression results in an altered pathway of activation, influencing protein complex formation and its protein partner interactions in early embryogenesis. In the adult brain, their function appears concentrated towards their enzyme activities, wherein biochemical variations can result in brain dysfunction.
Insights
The PRUNE and NM23-H1 genes interact and are co-expressed in developing mouse brains, suggesting a role in brain development and function. Their abnormal expression may lead to brain dysfunction.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- A genetic interaction between PRUNE and NM23/NDPK was previously suggested in Drosophila.
- Human PRUNE and NM23-H1 proteins physically interact, with implications for cancer progression.
Purpose of the Study:
- To functionally characterize the PRUNE-NM23 interaction during mammalian embryogenesis.
- To investigate the role of PRUNE and NM23-H1 in mammalian brain development and adult brain function.
Main Methods:
- Detailed gene expression analyses in mouse brains from embryonic development to adulthood.
- Focus on co-expression patterns in the cortex, hippocampus, midbrain, and cerebellum.
Main Results:
- Significant co-expression of PRUNE and NM23-H1 observed during embryonic brain development.
- Expression patterns suggest roles in specific brain regions like the cortex and hippocampus.
Conclusions:
- PRUNE and NM23-H1, along with their interaction partners, are likely crucial for mammalian brain development.
- Abnormal expression may disrupt protein complex formation and impact early embryogenesis.
- In adult brains, their enzymatic activities are key, and variations can cause dysfunction.

