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The pleiotropic RTK Kit can provide cytoskeletal signals that define cell shape, positioning and migration, but the underlying mechanisms are less well understood. Here we provide evidence that Kit signals through WASP (Wiskott-Aldrich Syndrome Protein), the central hematopoietic actin nucleation- ...
ORGANISM(S): Mus musculus 
Phagocytosis requires the activation of a plethora of mechanisms that include the activation of the actin cytoskeleton guided by the Arp2/3 complex. These are promoted by activators such as the Wiskott Aldrich Syndrome Protein (WASP) family members. In order to further understand the molecular mecha...
ORGANISM(S): Mus musculus 
For many behaviours studied at the phenotypic level, we have little or no idea of where to start searching for “candidate” genes: the transcriptome provides such a starting point. Here we consider transcriptomic changes associated with oviposition in the parasitoid wasp Nasonia vitripennis. Oviposit...
ORGANISM(S): Nasonia vitripennis 
Protein identification and proteome analyses of the wasp venom proteins The venom was isolated. The proteins were isolated and subjected to LC-MS.
ORGANISM(S): Vespa mandarinia 
2026-06-15 | PXD056368 | Pride
We aimed at characterizing the diverse hemocyte populations present in the hemolymph of the Drosophila larvae. The hemocytes were collected from wandering larvae infested by wasp (WI) or not infested (NI). The hemocytes were then sequenced using 10x genomics technology.
ORGANISM(S): Drosophila melanogaster 
The purpose of this project was to identify venom proteins from the venom gland of Leptopilina heterotoma (strain Lh14), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Leptopilina heterotoma 
2021-01-27 | PXD023824 | Pride
The purpose of this project was to identify venom proteins from the venom gland of Leptopilina boulardi (strain Lb17), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Leptopilina boulardi 
2021-01-27 | PXD023836 | Pride
The purpose of this project was to identify venom proteins from the venom gland of Ganaspis hookeri (strain GhFl, formerly 'G1'), a parasitoid wasp species that infects fruit flies in the genus Drosophila.
ORGANISM(S): Ganaspis 
2021-01-27 | PXD023825 | Pride
wasp metagenome
RNA samples to pair with methylation data from the Developmental DNA Methylation in the Parasitoid Wasp Nasonia vitripennis paper
ORGANISM(S): Nasonia vitripennis 
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