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Researchers from the Department of #Biology at SBASSE have identified genome-wide transcriptional changes during trophoblast stem cell differentiation, a key event during placental development.
1/11
#LUMS #SBASSE ImageImageImageImage
This work from Dr. Rahim Ullah’s #PhD thesis was carried out under the supervision of Dr. Amir Faisal and has been published in BMC’s Stem Cell Research and Therapy.
2/11
#LUMS #SBASSE #Biology
This multidisciplinary research highlights collaborative efforts between various groups in #Biology, including those of Dr. Aziz Mithani and Dr. Muhammad Tariq.
3/11
#LUMS #SBASSE
Differentiation of mouse trophoblast stem cells (TSCs) to trophoblast giant cells (TGCs) has been widely used as a model system to study placental development and function.
4/11
#LUMS #SBASSE
While several differentially expressed genes, including regulators of #TSC differentiation, have been identified, a comprehensive analysis of the global expression of genes and splice variants in the two cell types has not been reported.
5/11
#SBASSE #LUMS
The paper reports ~7800 differentially expressed genes in #TGCs compared to #TSCs which include regulators of the cell cycle, apoptosis, cytoskeleton, cell mobility, embryo implantation, metabolism, and various signaling pathways.
6/11
#LUMS #SBASSE
It shows that several mitotic proteins, including Aurora A kinase, were downregulated in TGCs and that the activity of Aurora A kinase is required for the maintenance of TSCs.
7/11
#SBASSE #LUMS
The paper also identifies hitherto undiscovered, cell-type-specific alternative splicing events in 31 genes in the two cell types. Finally, we also report 19 novel exons in 12 genes which are expressed in both TSCs and TGCs.
8/11
#SBASSE #LUMS
The data reported in this paper points to transcriptional diversity and differential transcriptome in mouse TSCs and TGCs that was not known previously.
9/11
#SBASSE #LUMS
Differential expression of some of these genes indicates a shift in the functional properties of TGCs as they differentiate from TSCs.
10/11
#SBASSE #LUMS
Functional validation of these genes will not only enhance our understanding of mammalian development but could also lead to finding ways to treat placental abnormalities and diseases which often lead to premature childbirth.
Read more: bit.ly/31eTpZh
11/11
#SBASSE #LUMS
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