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P Guptan

Publications and source records attributed to P Guptan.

2 recordsLinked to original sources

Myoblast diversification and ectodermal signaling in Drosophila.

The flight muscles of Drosophila derive from myoblasts found on the third instar disc. We demonstrate that these myoblasts already show distinctive properties and examine how this diversity is generated. In the late larva, Vestigial and low levels of Cut are expressed in myoblasts that will contribute to the indirect flight muscles. Other myoblasts, which express high levels of Cut but no Vestigial, are required for the formation of the direct flight muscles. Vestigial and Cut expression are stabilized by a mutually repressive feedback loop. Vestigial expression begins in the embryo in a subset of adult myoblasts, and Wingless signaling is required later to maintain this expression. Thus, myoblasts are divided into identifiable populations, consistent with their allocation to different muscles, and ectodermal signals act to maintain these differences.

Animals↗

Multiple transcripts encode the 5-HT1F receptor in rodent brain.

The mouse serotonin 1F (5-HT1F) receptor is encoded by at least three transcripts in mouse brain. These transcripts are expressed predominantly in cortex and hippocampus. Similar transcripts are seen in Northern analysis of rat brain mRNA. 5' RACE showed a predominant transcription start site around 350 bp upstream of the translational start present in mouse cDNA. Our results suggest that the heterogeneity seen in transcript size is due to differences in the 3' untranslated region, which could play a critical role in mRNA targeting and localization. The mouse 5-HT1F genomic clone shows the coding region to be intronless and an intron splice junction is seen in the 5' untranslated region which is conserved in both rat and mouse.

Animals↗