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Bhore, U.

Publications and source records attributed to Bhore, U..

2 recordsLinked to original sources

Tumour suppressor WT1 and its interacting protein RNA helicase DDX5 regulate the microRNA let7/Igf1r axis in the kidney mesenchyme

Germline mutations in tumour suppressor, Wilms Tumour 1 (WT1) as well as somatic and germline mutations in microRNA processing genes (MIRPG) have been identified in Wilms Tumours (WT), where upregulation of IGF2 through genetic and/or epigenetic mechanisms is commonly seen. Whether these different epigenetic and genetic causes converge on common targets is still unclear. WT1 is also involved in RNA binding and regulates the stability of these developmental mRNAs. We now show that WT1 interacts with microRNA let-7 and proteins involved in microRNA processing wherein DDX5 is found to be an important regulator. WT1 absence results in decreased microRNA levels in cell lines and kidney mesenchyme, which is further downregulated in a WT1 and DDX5 double knockdown, ultimately modulating Igf1r expression. These findings suggest a plausible mechanism by which WT1 mutations lead to WT, and converge on microRNA pathway and IGF signalling pathway, which are important contributing factors in the aetiology of WT.

cancer biology↗

Nutrition and density dependence of spontaneous female-biased dispersal in Drosophila

Dispersal is often essential for the attainment of Darwinian fitness, especially for species living on spatially structured, heterogeneous habitats. Theoretically, sex-specific resource requirement can drive the two sexes to disperse differently, resulting in sex biased dispersal (SBD). Understanding ecological factors affecting SBD is important. Using an experimental two-patch dispersal setup we measured spontaneous dispersal in laboratory adapted populations of Drosophila melanogaster under a set of common, interlinked ecological scenarios relating to - (a) dietary ecology and (b) adult density. We found deteriorating overall nutritional quality of food affects strength of SBD, and female dispersal is particularly sensitive to availability of protein. Adult density had sex specific effect on dispersal. Female dispersal was found to be density independent but males showed increased dispersal at higher density. Female tend to disperse more from male biased patch likely to avoid male harassment whereas absence of female drives male dispersal solidifying mate-finding dispersal hypothesis. These evidences of dispersal suggest that variation in dietary ecology and intraspecific competition can affect the degree and strength of existing SBD and thereby male-female interactions in a patch potentially affecting fitness components and population dynamics.

evolutionary biology↗