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Transcriptomic Analysis of Pulmonary Microvascular Endothelial Cells with IQGAP1 Knockdown.

DNA and cell biology (2020-05-05)
Shihong Su, Aihui Xu, Yang Chen, Wanzhen Li, Xiaojun Zha, Yani Wang, Gengyun Sun
RÉSUMÉ

Pulmonary microvascular endothelium barrier plays a critical role in protecting the pulmonary tissue from inflammatory injury in acute respiratory distress syndrome and acute lung injury (ARDS/ALI). The dysregulation of IQ-GTPase-activating protein 1 (IQGAP1) was an important etiology of endothelium barrier injury. However, significant differentially expressed genes (DEGs) and signaling pathways directly regulated by IQGAP1 are too complicated to fully understand. In this research, we identified a total of 1216 DEGs regulated by knockdown of IQGAP1 in rat pulmonary microvascular endothelial cells on the basis of transcriptomic RNA sequencing (RNA-Seq). Among them, 665 were upregulated DEGs and 551 were downregulated DEGs. Gene ontology analysis has revealed that upregulated DEGs were mainly enriched in DNA replication, cell cycle, and chromosome formation, while downregulated DEGs were mainly involved in the regulation of many cellular bioprocesses including cell proliferation, cell adhesion, and cell migration. Kyoto Encyclopedia of Genes and Genomes pathways analysis toward DEGs showed that upregulated pathways were mainly about DNA replication, while the significantly downregulated pathways were about TNF signaling pathway and some inflammatory- and proliferation-related pathways. Furthermore, we choose 30 DEGs for validation by qRT-PCR, the results were quite consistent with the RNA-Seq. In addition, we also found that knockdown of IQGAP1 caused a significant impact on many cytokines and inflammatory factors, which play a vital role in ARDS/ALI. In summary, in this study on the basis of RNA-Seq, we found IQGAP1 not only exerts a crucial role in microvascular endothelium barrier but also plays an important role in inflammation, which might provide a new insight for future study on IQGAP1 in the related diseases such as ARDS/ALI.

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MISSION® esiRNA, targeting human IQGAP1