| Literature DB >> 35053217 |
Yuka Mizumoto1, Ryota Sakamoto1, Akiko Nagata1, Suzuka Sakane1, Atsushi Kittaka2, Minami Odagi1, Masayuki Tera1, Kazuo Nagasawa1.
Abstract
The active form of vitamin D3 (D3), 1a,25-dihydroxyvitamn D3 (1,25D3), plays a central role in calcium and bone metabolism. Many structure-activity relationship (SAR) studies of D3 have been conducted, with the aim of separating the biological activities of 1,25D3 or reducing its side effects, such as hypercalcemia, and SAR studies have shown that the hypercalcemic activity of C2-substituted derivatives and 19-nor type derivatives is significantly suppressed. In the present paper, we describe the synthesis of 19-nor type 1,25D3 derivatives with alkoxy groups at C2, by means of the Julia-Kocienski type coupling reaction between a C2 symmetrical A ring ketone and a CD ring synthon. The effect of C2 substituents on the stereoselectivity of the coupling reaction was evaluated. The biological activities of the synthesized derivatives were evaluated in an HL-60 cell-based assay. The a-methoxy-substituted C2α-7a was found to show potent cell-differentiating activity, with an ED50 value of 0.38 nM, being 26-fold more potent than 1,25D3.Entities:
Keywords: 19-norvitamin D3; C2-substitution; Julia olefination; VDR binding affinity; cell differentiation; stereoselectivity
Mesh:
Substances:
Year: 2022 PMID: 35053217 PMCID: PMC8773602 DOI: 10.3390/biom12010069
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Figure 1Structures of 19-nor type vitamin D derivatives substituted at C2.
Scheme 1Synthesis of A ring ketones 5a–c.
Diastereomeric ratio of coupling product 7 in Julia-type coupling of ketone 5 with sulfone 6.
| Coupling Product 7 | ||||
|---|---|---|---|---|
| Entry | Ketone 5 | Yield [%] 1 | Ratio [C2α/C2β] 2 | |
| 1 |
| 31 | 1:3.5 | |
| 2 |
| 27 | 1:1 | |
| 3 |
| 62 | 1:0 | |
1 Combined yield of isomers C2α and C2β of 7. 2 Determined by 1H NMR.
Scheme 2Conformational analysis of the A ring ketones 5 and mechanism of the Julia-type olefination.
Figure 2Possible transition states for the Julia-type olefination with 5a (a) and 5c (b).
Relative VDR binding affinity and the HL-60 cell differentiation-inducing activity of C2-alkoxy substituted 19-nor type D3 derivatives, 7a–c.
| VDR Binding | HL-60 Differentiation | ||
|---|---|---|---|
| Compound | Activity Ratio 1 | EC50 (M) | Activity Ratio 1 |
| 1,25D3 | 100.0 | 1.01 × 10−8 | 100 |
| 2α-OMe (C2α- | 100.8 | 3.80 × 10−10 | 2655 |
| 2β-OMe (C2β- | 47.5 | 7.13 × 10−9 | 141 |
| 2α-OBn (C2α- | 2.5 | 3.34 × 10−8 | 30 |
| 2β-OBn (C2β- | 0.4 | 1.34 × 10−7 | 8 |
| 2α- | 0 | 4.83 × 10−7 | 2 |
1 The potency of 1,25D3 was normalized to 100.