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1. Characterization of Cysteine Cathepsin Expression in the Central Nervous System of Aged Wild-Type and Cathepsin-Deficient Mice

2. Trace Amine-Associated Receptor 1 Trafficking to Cilia of Thyroid Epithelial Cells

3. Role of Kallikrein 7 in Body Weight and Fat Mass Regulation

4. Investigations on Primary Cilia of Nthy-ori 3-1 Cells upon Cysteine Cathepsin Inhibition or Thyrotropin Stimulation

5. Lack of L-type amino acid transporter 2 in murine thyroid tissue induces autophagy

6. Monocarboxylate transporter 8 deficiency leads to autophagy-induced persistent cathepsin-mediated thyroglobulin processing triggered by insufficient L-type amino acid transporter 2 functionality

7. Role of Kallikrein 7 in Body Weight and Fat Mass Regulation

8. The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms that Encompass Autophagy

9. Procathepsin V is secreted in a TSH regulated manner from human thyroid epithelial cells and is accessible to an activity-based probe

10. Kallikrein-related peptidase 14 activates zymogens of membrane type matrix metalloproteinases (MT-MMPs) - a CleavEx library-based analysis

11. Evidence of G-protein-coupled receptor and substrate transporter heteromerization at a single molecule level

12. Auto-Regulation of the Thyroid Gland Beyond Classical Pathways

13. Function of Cathepsin K in the Central Nervous System of Male Mice is Independent of Its Role in the Thyroid Gland

14. Function of Cathepsin K in the Central Nervous System of Male Mice is Independent of Its Role in the Thyroid Gland

15. Efficacy of protocols for induction of chronic hyperthyroidism in male and female mice

16. Kallikrein-Related Peptidase 14 Activates Zymogens of Membrane Type Matrix Metalloproteinases (MT-MMPs)—A CleavEx Based Analysis

17. 'Thyroglobulin Storage, Processing and Degradation for Thyroid Hormone Liberation'

18. Modulation of monocarboxylate transporter 8 oligomerization by specific pathogenic mutations

19. Interdependence of thyroglobulin processing and thyroid hormone export in the mouse thyroid gland

20. Analysis of Human TAAR8 and Murine Taar8b Mediated Signaling Pathways and Expression Profile

21. Defects in mitochondrial distribution during the prolonged lag phase ofSaccharomyces cerevisiaepreceding growth in glycerol as the sole source of carbon

22. The protein domains of the Dictyostelium microprocessor that are required for correct subcellular localization and for microRNA maturation

24. Visualization of kallikreins in thyroid epithelial and carcinoma cells

25. Interconnection between cathepsin protein levels and thyroid hormone transporters in human thyroid epithelial cells

26. Thyroid Cathepsin K: Roles in Physiology and Thyroid Disease

27. Effects of lunar and mars dust simulants on HaCaT keratinocytes and CHO-K1 fibroblasts

28. Micro Raman spectroscopy for monitoring alterations between human skin keratinocytes HaCaT and their tumorigenic derivatives A5RT3-toward a Raman characterization of a skin carcinoma model

29. Antimicrobial fragments of the pro-region of cathelicidins and other immune peptides

30. Phenolic Profile and In Vitro Assessment of Cytotoxicity and Antibacterial Activity of Ziziphus spina-christi Leaf Extracts

31. Cathepsin B is essential for regeneration of scratch-wounded normal human epidermal keratinocytes

33. Induced hyper- and hypothyroidism results in altered maturation states of thyroglobulin processing proteases in the mouse thyroid gland

34. Trace Amine-Associated Receptor 1 Localization at the Apical Plasma Membrane Domain of Fisher Rat Thyroid Epithelial Cells Is Confined to Cilia

35. Proteolysis mediated by cysteine cathepsins and legumain-recent advances and cell biological challenges

37. Investigation of potential effects on thyroglobulin processing enzymes and thyroid hormone transporters in thyroid glands of mice with induced hypo- or hyperthyroidism

38. Expression and localization of trace amine-associated receptors in thyroid epithelial cells treated with cathepsin B and K inhibitors

39. Can nuclear cathepsin variants promote tumor progression in the thyroid?

40. Comparison of two protocols for induction of hyperthyroidism in mice

41. Expression profiles of thyroid hormone transporters Mct10 and Lat2 within the different intestinal segments of young and aged wild-type mice

42. Characterisation and metabolism of astroglia-rich primary cultures from cathepsin K-deficient mice

43. Imaging of protease functions--current guide to spotting cysteine cathepsins in classical and novel scenes of action in mammalian epithelial cells and tissues

44. Subject Index Vol. 4, Suppl. 1, 2015

46. Cathepsin K deficiency in mice induces structural and metabolic changes in the central nervous system that are associated with learning and memory deficits

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