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517 results on '"solute carrier"'

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1. High casein concentration induces diarrhea through mTOR signal pathway inhibition in post-weaning piglets.

2. A LAT1-Like Amino Acid Transporter Regulates Neuronal Activity in the Drosophila Mushroom Bodies.

3. Advancing drug discovery through assay development: a survey of tool compounds within the human solute carrier superfamily.

4. The Effects of N-Glycosylation on the Expression and Transport Activity of OATP1A2 and OATP2B1.

5. Computational Characterization of Membrane Proteins as Anticancer Targets: Current Challenges and Opportunities.

6. Novel Fluorescent Strategy for Discriminating T and B Lymphocytes Using Transport System.

7. Advancing drug discovery through assay development: a survey of tool compounds within the human solute carrier superfamily

9. MicroRNAs in the Regulation of Solute Carrier Proteins Behind Xenobiotic and Nutrient Transport in Cells

10. A LAT1-Like Amino Acid Transporter Regulates Neuronal Activity in the Drosophila Mushroom Bodies

12. A genome-wide association study of 24-hour urinary excretion of endocrine disrupting chemicals

13. Peroxisomal NAD(H) Homeostasis in the Yeast Debaryomyces hansenii Depends on Two Redox Shuttles and the NAD + Carrier, Pmp47.

14. Novel Fluorescent Strategy for Discriminating T and B Lymphocytes Using Transport System

15. In silico analysis of the solute carrier (SLC) family in cancer indicates a link among DNA methylation, metabolic adaptation, drug response, and immune reactivity.

16. Solute Carrier Transportome in Chemotherapy-Induced Adverse Drug Reactions

17. Allosteric modulators of solute carrier function: a theoretical framework.

18. SLC38A10 Deficiency in Mice Affects Plasma Levels of Threonine and Histidine in Males but Not in Females: A Preliminary Characterization Study of SLC38A10 −/− Mice.

19. In silico analysis of the solute carrier (SLC) family in cancer indicates a link among DNA methylation, metabolic adaptation, drug response, and immune reactivity

20. Allosteric modulators of solute carrier function: a theoretical framework

21. Do Amino Acid Antiporters Have Asymmetric Substrate Specificity?

22. Transporter-Mediated Drug Delivery.

23. Solute carrier-related signature for assessing prognosis and immunity in patients with clear-cell renal cell carcinoma.

24. SNAT2 is responsible for hyperosmotic induced sarcosine and glycine uptake in human prostate PC-3 cells.

25. Organic Cation Transporter Expression and Function in the CNS

26. A mechanism of uncompetitive inhibition of the serotonin transporter

27. The Role of Ion Transporters in the Pathophysiology of Infectious Diarrhea

28. Reshaping the Binding Pocket of the Neurotransmitter:Solute Symporter (NSS) Family Transporter SLC6A14 (ATB 0,+) Selectively Reduces Access for Cationic Amino Acids and Derivatives.

29. Modeling of SGLT1 in Reconstituted Systems Reveals Apparent Ion-Dependencies of Glucose Uptake and Strengthens the Notion of Water-Permeable Apo States.

30. High casein concentration induces diarrhea through mTOR signal pathway inhibition in post-weaning piglets.

31. Several orphan solute carriers functionally identified as organic cation transporters: Substrates specificity compared with known cation transporters.

33. Comprehensive Molecular Analyses of an SLC Family-Based Model in Stomach Adenocarcinoma

34. Peroxisomal NAD(H) Homeostasis in the Yeast Debaryomyces hansenii Depends on Two Redox Shuttles and the NAD+ Carrier, Pmp47

35. The drug transporter OAT3 (SLC22A8) and endogenous metabolite communication via the gut–liver–kidney axis

36. Type 2 Diabetes Variants Disrupt Function of SLC16A11 through Two Distinct Mechanisms

37. MicroRNAs in the Regulation of Solute Carrier Proteins Behind Xenobiotic and Nutrient Transport in Cells

38. Modeling of SGLT1 in Reconstituted Systems Reveals Apparent Ion-Dependencies of Glucose Uptake and Strengthens the Notion of Water-Permeable Apo States

39. Overexpression of Slc22a18 facilitates fat accumulation in mice.

40. Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters.

41. SLC38A10 Knockout Mice Display a Decreased Body Weight and an Increased Risk-Taking Behavior in the Open Field Test.

42. Targeting solute carriers to modulate receptor–ligand interactions.

43. Identification of a Solute Carrier Family-Based Signature for Predicting Overall Survival in Osteosarcoma.

44. Transcriptome Analysis of Solute Carrier-Associated Genes in Hepatocellular Carcinoma: Friend or Foe?

45. SLC Family Transporters

46. A structural view onto disease-linked mutations in the human neutral amino acid exchanger ASCT1

47. Impedance-Based Phenotypic Readout of Transporter Function: A Case for Glutamate Transporters

48. SLC38A10 Knockout Mice Display a Decreased Body Weight and an Increased Risk-Taking Behavior in the Open Field Test

49. Identification of a Solute Carrier Family-Based Signature for Predicting Overall Survival in Osteosarcoma

50. Amino acid transporters as modulators of glucose homeostasis.

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