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1. Colitis Is Associated with Loss of the Histidine Phosphatase LHPP and Upregulation of Histidine Phosphorylation in Intestinal Epithelial Cells

2. Multi-omics data integration reveals novel drug targets in hepatocellular carcinoma

3. The initiator methionine tRNA drives cell migration and invasion leading to increased metastatic potential in melanoma

5. Loss of TSC complex enhances gluconeogenesis via upregulation of Dlk1-Dio3 locus miRNAs

6. Brf1 loss and not overexpression disrupts tissues homeostasis in the intestine, liver and pancreas

7. Multi-omics data integration reveals novel drug targets in hepatocellular carcinoma

8. Colitis is associated with loss of LHPP and up-regulation of histidine phosphorylation in intestinal epithelial cells

9. Loss of TSC complex enhances gluconeogenesis via upregulation of

10. The initiator methionine tRNA drives cell migration and invasion leading to increased metastatic potential in melanoma

11. The protein histidine phosphatase LHPP is a tumour suppressor

12. Stb3 Binds to Ribosomal RNA Processing Element Motifs That Control Transcriptional Responses to Growth in Saccharomyces cerevisiae

13. mTOR in health and in sickness

14. The Function and Properties of the Azf1 Transcriptional Regulator Change with Growth Conditions in Saccharomyces cerevisiae

15. Stb3 plays a role in the glucose-induced transition from quiescence to growth in Saccharomyces cerevisiae

16. Pol II and its associated epigenetic marks are present at Pol III-transcribed noncoding RNA genes

17. Protein Kinase A, TOR, and Glucose Transport Control the Response to Nutrient Repletion in Saccharomyces cerevisiae▿ †

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