| Literature DB >> 21127464 |
Qianjiao Yang1, Dan Liu, Deyang Sun, Sen Yang, Guodong Hu, Zuti Wu, Linxiang Zhao.
Abstract
Psammaplin F, an unsymmetrical disulfide bromotyrosine, was isolated from the sponge Pseudoceratina purpurea in 2003. We reported here the first total synthesis of psammaplin F in 12% overall yield by employing Cleland's reagent reduction as key step. The longest linear synthetic sequence starting from 3-bromo-4-hydroxybenzaldehyde and hydantoin was seven steps. In addition, a detailed X-ray crystal structure analysis of psammaplin A analogue 8b is given for the first time.Entities:
Mesh:
Substances:
Year: 2010 PMID: 21127464 PMCID: PMC6259465 DOI: 10.3390/molecules15128784
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Retrosynthetic analysis of psammaplin F (1).
Scheme 1Synthetic route to the target compound 2.
Scheme 2Synthetic route to the target compound 3.
Scheme 3Synthetic route to psammaplin F (1).
Comparison of 1H-NMR (600 MHz) and 13C-NMR (150 MHz) data in CD3OD of synthetic and natural psammalin F (1).
| Position | Synthetic psammaplin F | Natural psammaplin F[1] | ||
|---|---|---|---|---|
| H ( | C ( | H ( | C ( | |
| 2 | 2.85 (t, 6.0) | 38.7 | 2.84 (t, 6.0) | 38.6 |
| 2’ | 2.85 (t, 6.0) | 38.2 | 2.84 (t, 6.0) | 37.9 |
| 3 | 3.55 (t, 6.0) | 39.8 | 3.54 (t, 6.0) | 39.8 |
| 3’ | 3.55 (t, 6.0) | 40.0 | 3.54 (t, 6.0) | 40.1 |
| 5 | 166.0 | 166.0 | ||
| 5’ | 161.8 | 161.9 | ||
| 6 | 153.2 | 153.3 | ||
| 6’ | 159.0 | 159.2 | ||
| 7 | 3.80 (s) | 28.7 | 3.78 (s) | 28.8 |
| 8 | 130.6 | 130.7 | ||
| 9 | 7.34 (d, 1.8) | 134.5 | 7.35 (d, 2.0) | 134.6 |
| 10 | 110.5 | 110.6 | ||
| 11 | 153.7 | 153.9 | ||
| 12 | 6.77(d, 8.4) | 117.0 | 6.75 (d, 8.0) | 117.2 |
| 13 | 7.07 (dd, 1.8, 8.4) | 130.4 | 7.05 (dd, 2.0, 8.0) | 130.5 |
Figure 2The molecular structure of the compound 8b with 30% probability of thermal ellipsoids.
Crystal data and structure refinement for compound 8b.
| Formula | C24 H30 N4 O4 S2 |
| Fw | 502.64 |
| Temp (K) | 295(2) |
| Cryst system | Triclinic |
| Space group | |
| 5.7159(9) | |
| 9.6170(15) | |
| 23.585(4) | |
| 94.030(2) | |
| 95.455(2) | |
| 102.532(2) | |
| 1254.3(3) | |
|
| 2 |
| 1.331 | |
| 0.250 | |
| F(000) | 532 |
| Limiting indices | -6<=h<=6, -11<=k<=5, -28<=l<=27 |
| Data / restraints / parameters | 4589 / 0 / 311 |
| θ range for data collection (°) | 1.74 to 25.66 |
| Completeness to theta = 25.66 | 97.2 % |
| Reflnscollected/unique | 6718 / 4589 |
| GOF | 1.049 |
| Final R indices [ | R1a = 0.0484, ωR2b = 0.1271 |
| R1 = 0.0595, ωR2 = 0.1364 |
Selected bond lengths (Å) and angles (°) for compound 8b.
| C(1)-C(2) | 1.516(4) | C(14)-N(4) | 1.446(3) |
| C(2)-C(3) | 1.361(4) | C(15)-O(4) | 1.222(3) |
| C(2)-C(7) | 1.380(4) | C(15)-N(4) | 1.337(3) |
| C(3)-C(4) | 1.393(4) | C(15)-C(16) | 1.500(3) |
| C(4)-C(5) | 1.375(3) | C(16)-N(3) | 1.271(3) |
| C(5)-C(6) | 1.379(3) | C(16)-C(17) | 1.501(3) |
| C(5)-C(8) | 1.518(3) | C(17)-C(18) | 1.510(3) |
| C(6)-C(7) | 1.382(4) | C(18)-C(23) | 1.372(3) |
| C(8)-C(9) | 1.507(3) | C(18)-C(19) | 1.376(4) |
| C(9)-N(1) | 1.274(3) | C(19)-C(20) | 1.387(4) |
| C(9)-C(10) | 1.502(3) | C(20)-C(21) | 1.370(5) |
| C(10)-O(2) | 1.223(3) | C(21)-C(22) | 1.360(5) |
| C(10)-N(2) | 1.327(3) | C(21)-C(24) | 1.518(4) |
| C(11)-N(2) | 1.445(3) | C(22)-C(23) | 1.395(4) |
| C(11)-C(12) | 1.509(3) | N(1)-O(1) | 1.384(2) |
| C(12)-S(1) | 1.817(2) | N(3)-O(3) | 1.388(2) |
| C(13)-C(14) | 1.518(3) | S(1)-S(2) | 2.0376(8) |
| C(13)-S(2) | 1.830(2) | ||
| C(3)-C(2)-C(7) | 117.0(3) | O(4)-C(15)-C(16) | 120.5(2) |
| C(3)-C(2)-C(1) | 121.2(3) | N(4)-C(15)-C(16) | 117.6(2) |
| C(7)-C(2)-C(1) | 121.9(3) | N(3)-C(16)-C(15) | 114.33(19) |
| C(2)-C(3)-C(4) | 121.9(3) | N(3)-C(16)-C(17) | 127.5(2) |
| C(5)-C(4)-C(3) | 120.7(3) | C(15)-C(16)-C(17) | 118.11(19) |
| C(4)-C(5)-C(6) | 117.8(2) | C(16)-C(17)-C(18) | 112.58(18) |
| C(4)-C(5)-C(8) | 120.6(2) | C(23)-C(18)-C(19) | 117.3(2) |
| C(6)-C(5)-C(8) | 121.6(2) | C(23)-C(18)-C(17) | 122.0(2) |
| C(5)-C(6)-C(7) | 120.6(3) | C(19)-C(18)-C(17) | 120.7(2) |
| C(2)-C(7)-C(6) | 122.0(3) | C(18)-C(19)-C(20) | 121.2(3) |
| C(9)-C(8)-C(5) | 112.76(18) | C(21)-C(20)-C(19) | 121.4(3) |
| N(1)-C(9)-C(10) | 113.78(18) | C(22)-C(21)-C(20) | 117.5(3) |
| N(1)-C(9)-C(8) | 126.7(2) | C(22)-C(21)-C(24) | 120.8(3) |
| C(10)-C(9)-C(8) | 119.52(18) | C(20)-C(21)-C(24) | 121.7(4) |
| O(2)-C(10)-N(2) | 122.1(2) | C(21)-C(22)-C(23) | 121.6(3) |
| O(2)-C(10)-C(9) | 121.86(19) | C(18)-C(23)-C(22) | 121.0(3) |
| N(2)-C(10)-C(9) | 116.09(18) | C(9)-N(1)-O(1) | 113.18(18) |
| N(2)-C(11)-C(12) | 110.54(18) | C(10)-N(2)-C(11) | 124.39(19) |
| C(11)-C(12)-S(1) | 114.69(15) | C(16)-N(3)-O(3) | 112.38(18) |
| C(14)-C(13)-S(2) | 110.52(16) | C(15)-N(4)-C(14) | 122.4(2) |
| N(4)-C(14)-C(13) | 113.57(19) | C(12)-S(1)-S(2) | 105.05(8) |
| O(4)-C(15)-N(4) | 121.9(2) | C(13)-S(2)-S(1) | 104.27(8) |
Figure 3The 1D chain structure of compound 8b constructed via intermolecular hydrogen bond interactions (green dash line).
Intermolecular hydrogen bond lengths (Å) and bond angles (°).
| D-H...A | d(D-H) | d(H-A) | d(D-A) | |
|---|---|---|---|---|
| O(1)-H(1)...O(4)#1 | 0.82 | 1.87 | 2.671(2) | 167.0 |
| O(3)-H(3A)...O(2)#2 | 0.82 | 1.90 | 2.711(2) | 171.5 |
| C(4)-H(4)...O(3)#2 | 0.93 | 2.53 | 3.229(3) | 133 |
Symmetry transformations used to generate equivalent atoms: #1 -x+1, -y+1, -z+1; #2 -x+3, -y+2, -z+1.