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These two seminal studies opened new avenues in epigenetic research and raised many essential questions regarding the roles of this new epigenetic modification, not only in brain development and pluripotency but also in transcriptional regulation, DNA demethylation and cancer.
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Although this study opens new avenues on the functions of the PiT protein family, the molecular mechanisms leading to the impairment of liver development remain to be elucidated, including open questions of whether the proliferation-associated function of PiT1 and/or the Na+Pi transport activity of PiT1 and PiT2 are involved in the observed phenotypes.
This study opens new avenues to understand the role of nematodes in the epidemiology and evolution of pathogenic bacteria in the environment.
This study opens new avenues to further elucidate the molecular mechanisms controlling FMRP trafficking with its associated mRNAs in and out of RNA granules.
Our study opens new avenues in the field of shape- and elasticity-induced cellular uptake of therapeutic triggers to be potentially developed into a novel and powerful delivery method with broad applications in cancer therapy.
Given their conservation in distantly related eukaryotes including fungi and animals, this study opens new avenues for research towards understanding the function of this novel family of ion channels not only in plants but also in other eukaryotes.
Our study opens new avenues for the investigation of the consequences of the described hyperglycemia-TXNIP-TRX-ROS axis on susceptibility to oxidative stress in oncogenesis and tumor progression.
Overall, the introduced study opens new avenue for cheap and stable transition metals-based nanostructures as non-precious catalysts for fuel cell applications.
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CEO of Professional Science Editing for Scientists @ prosciediting.com