scholarly journals Reciprocal role of vitamin D receptor on β-catenin regulated keratinocyte proliferation and differentiation

Author(s):  
Lizhi Hu ◽  
Daniel D. Bikle ◽  
Yuko Oda
2015 ◽  
Vol 93 (5) ◽  
pp. 349-354 ◽  
Author(s):  
Daniel D. Bikle

Vitamin D and calcium are well-established regulators of keratinocyte proliferation and differentiation. Therefore, it was not a great surprise that deletion of the vitamin D receptor (VDR) should predispose the skin to tumor formation, and that the combination of deleting both the VDR and calcium sensing receptor (CaSR) should be especially pro-oncogenic. In this review I have examined 4 mechanisms that appear to underlie the means by which VDR acts as a tumor suppressor in skin. First, DNA damage repair is curtailed in the absence of the VDR, allowing mutations in DNA to accumulate. Second and third involve the increased activation of the hedgehog and β-catenin pathways in the epidermis in the absence of the VDR, leading to poorly regulated proliferation with reduced differentiation. Finally, VDR deletion leads to a shift in the expression of long noncoding RNAs toward a more oncogenic profile. How these different mechanisms interact and their relative importance in the predisposition of the VDR null epidermis to tumor formation remain under active investigation.


2019 ◽  
Vol 8 (7) ◽  
pp. 1070-1081
Author(s):  
Amarjit Saini ◽  
Linda Björkhem-Bergman ◽  
Johan Boström ◽  
Mats Lilja ◽  
Michael Melin ◽  
...  

The CC genotype of the vitamin D receptor (VDR) polymorphism TaqI rs731236 has previously been associated with a higher risk of developing myopathy compared to TT carriers. However, the mechanistic role of this polymorphism in skeletal muscle is not well defined. The effects of vitamin D on patients genotyped for the VDR polymorphism TaqI rs731236, comparing CC and TT carriers were evaluated. Primary human myoblasts isolated from 4 CC carriers were compared with myoblasts isolated from four TT carriers and treated with vitamin D in vitro. A dose-dependent inhibitory effect on myoblast proliferation and differentiation was observed concurrent with modifications of key myogenic regulatory factors. RNA sequencing revealed a vitamin D dose–response gene signature enriched with a higher number of VDR-responsive elements (VDREs) per gene. Interestingly, the greater the expression of muscle differentiation markers in myoblasts, the more pronounced was the vitamin D-mediated response to suppress genes associated with myogenic fusion and myotube formation. This novel finding provides a mechanistic explanation to the inconsistency regarding previous reports of the role of vitamin D in myoblast differentiation. No effects in myoblast proliferation, differentiation or gene expression were related to CC vs TT carriers. Our findings suggest that the VDR polymorphism TaqI rs731236 comparing CC vs TT carriers did not influence the effects of vitamin D on primary human myoblasts and that vitamin D inhibits myoblast proliferation and differentiation through key regulators of cell cycle progression. Future studies need to employ strategies to identify the primary responses of vitamin D that drive the cellular response towards quiescence.


2010 ◽  
pp. P1-9-P1-9
Author(s):  
J Tang ◽  
P Li ◽  
AKW Tse ◽  
SV Nicosia ◽  
X Zhang ◽  
...  

2020 ◽  
Vol 10 (04) ◽  
pp. 222-235
Author(s):  
Eman S. Arafat ◽  
Inass M. Taha ◽  
Shahad W. Kattan ◽  
Nouf Abubakr Babteen ◽  
Iman Fawzy

2007 ◽  
Vol 68 (1) ◽  
pp. S62
Author(s):  
Angel R. Villasmil ◽  
Mercedes T. Fernandez-Mestre ◽  
Violeta Ogando ◽  
Zulay E. Layrisse

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