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Showing 1-9 of 9 results for "SRP3039" within Papers
Richard G Boles
Handbook of Growth and Growth Monitoring in Health and Disease null
Attaya Suvannasankha et al.
Oncotarget, 6(23), 19647-19660 (2015-05-07)
Multiply myeloma (MM) grows in and destroys bone, where osteocytes secrete FGF23, a hormone which affects phosphate homeostasis and aging. We report that multiple myeloma (MM) cells express receptors for and respond to FGF23. FGF23 increased mRNA for EGR1 and
Katalin Bartos et al.
Journal of cell communication and signaling (2022-11-27)
Memo1 deletion in mice causes premature aging and an unbalanced metabolism partially resembling Fgf23 and Klotho loss-of-function animals. We report a role for Memo's redox function in renal FGF23-Klotho signaling using mice with postnatally induced Memo deficiency in the whole
Fibroblast growth factors.
Ornitz, D.M., et al.
Genome Biology, 2, 30051-300512 (2001)
Anthony A Portale et al.
PloS one, 10(11), e0142924-e0142924 (2015-11-21)
Fibroblast growth factor 23 (FGF23) is a potent regulator of phosphate (Pi) and vitamin D homeostasis. The transcription factor, early growth response 1 (egr-1), is a biomarker for FGF23-induced activation of the ERK1/2 signaling pathway. We have shown that ERK1/2
Klotho converts canonical FGF receptor into a specific receptor for FGF23.
Urakawa I
Nature, 444(7120), 770-774 (2006)
Yuki Masuda et al.
Biological & pharmaceutical bulletin, 38(5), 687-693 (2015-03-06)
Fibroblast growth factors (Fgfs) are polypeptide growth factors with diverse biological activities. While several studies have revealed that Fgf23 plays important roles in the regulation of phosphate and vitamin D metabolism, the additional physiological roles of Fgf23 remain unclear. Although
Interplay between vitamin D and the drug metabolizing enzyme CYP3A4.
Wang Z
The Journal of Steroid Biochemistry and Molecular Biology, 136, 54-58 (2013)
Fibroblast growth factor 23 and bone mineralisation.
Guo YC and Yuan Q
International Journal of Oral Science, 7(1), 8-13 (2015)
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