| Literature DB >> 28937640 |
Ying Fu1, Jing-Yi Wang2, Dong Zhang3, Yu-Feng Chen4, Shuang Gao5, Li-Xia Zhao6, Fei Ye7.
Abstract
A series of novel sulfonylurea benzothiazolines was designed by splicing active groups and bioisosterism. A solvent-free synthetic route was developed for the sulfonylurea benzothiazoline derivatives via the cyclization and carbamylation. All compounds were characterized by IR, ¹H-NMR, 13C-NMR, HRMS. The biological activity tests indicated the compounds could protect maize against the injury caused by chlorsulfuron to some extent. The molecular docking result showed that the new compound competed with chlorsulfuron to bind with the herbicide target enzyme active site to attain detoxification.Entities:
Keywords: active subunit combination; safener activity; solvent-free synthesis; sulfonylurea benzothiazoline
Mesh:
Substances:
Year: 2017 PMID: 28937640 PMCID: PMC6151413 DOI: 10.3390/molecules22101601
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1The exploitation of the new herbicide.
Scheme 2The design of the target compounds.
Scheme 3Route for synthesis of the target compounds 3.
Characterization data, reaction condition and yields for products 2 and 3.
| Entry | R1 | R2 | Compound 2 | Compound 3 | ||||
|---|---|---|---|---|---|---|---|---|
| Time (h) | Yield (%) # | Time (h) | Yield (%) # | |||||
| a | CH3 | CH3 | r.t. | 0.5 | 82 | 12 | 12 | 96 |
| b | CH3 | CH2CH3 | r.t. | 0.5 | 83 | r.t. | 5 | 65 |
| c | CH3 | CH2CH2CH3 | r.t. | 0.5 | 92 | r.t. | 5 | 78 |
| d | CH3 | CH(CH3)2 | 80 | 1 | 84 | r.t. | 12 | 70 |
| e | CH3 | CH2COCH3 | 50 | 3 | 78 | r.t. | 10 | 55 |
| f | CH3 | CH2CH2CH2CH3 | r.t. | 2 | 76 | r.t. | 10 | 50 |
| g | CH3 | CH2CH(CH3)2 | r.t. | 0.5 | 76 | r.t. | 12 | 36 |
| h | CH3 | C(CH3)3 | 88 | 1 | 80 | 36 | 2 | 59 |
| i | CH3 | PhCH2CH2 | r.t. | 0.5 | 86 | 12 | 12 | 95 |
| j | CH2CH3 | CH2CH3 | r.t. | 0.5 | 82 | 5 | 5 | 40 |
| k | CH2CH2CH3 | CH2CH2CH3 | 80 | 0.5 | 56 | 4 | 4 | 82 |
| l | (CH2)4 | r.t. | 0.5 | 91 | 12 | 12 | 95 | |
| m | (CH2)5 | r.t. | 0.5 | 92 | 12 | 12 | 99 | |
# Refers to yields of crude products only; r.t.: Room temprature.
Scheme 4Mechanistic outline for cyclization reaction.
Effect of detoxification of compounds 3a–m to growth index of maize i, ii, iii, iv.
| Compound | Root Length Recovery Rate (%) | Plant Height Recovery Rate (%) | Root Fresh Weight Recovery Rate (%) | Plant Fresh Weight Recovery Rate (%) |
|---|---|---|---|---|
| 32.66 efg | 81.62 de | 81.25 b | 89.47 c | |
| 38.05 cde | 68.57 f | 37.50 h | 57.89 ef | |
| 35.02 def | 54.41 g | 43.75 g | 21.05 h | |
| 55.89 a | 109.56 a | 87.50 b | 126.31 a | |
| 42.76 bc | 100.92 ab | 6.25 m | 52.63 f | |
| 19.87 i | 20.59 i | 56.25 e | 42.11 g | |
| 56.23 a | 91.73b cd | 12.50 l | 73.68 d | |
| 27.95 gh | 81.86 de | 37.50 h | 84.21 c | |
| 45.12 b | 72.24 ef | 87.50 b | 105.26 b | |
| 32.66 efg | 84.01 cd | 31.25 i | 110.53 b | |
| 18.18 ij | 73.35 ef | 156.25 a | 57.89 ef | |
| 31.31 fg | 40.26 h | 37.50 h | 57.89 ef | |
| 33.00 efg | 89.34 cd | 18.75 k | 84.21 c | |
| 25.93 h | 92.65 bc | 12.50 l | 110.53 b |
i Data are means of three replicates; ii ; iii Water treated was used as contrast; iv Small letter is significant at the 0.05 level.
Chemical property comparisons of chlorsulfuron with 3c.
| Compounds | log | p | MW | Electronegativity c |
|---|---|---|---|---|
| Chlorsulfuron | 2.63 | 4.1 ± 0.4 | 357.77 | |
| 4.85 | 4.6 ± 0.4 | 390.52 |
a The log p was predicted by ChemBioOffice 2014; b The pKawas predicted by ACD/lab; c The Electronegativity was predicted by Sybyl-X 2.0 (Tripos Inc., St. Louis, MO, USA).
Figure 1Superimposed molecular structure modeling. The structure of chlorsulfuron is shown in red, and compound 3c is shown in blue.
Figure 2The docking modeling of chlorsulfuron (A) and 3c (B) with ALS. The carbon atoms are shown in green (A) and light blue (B), the sulfur atoms are shown in yellow, the oxygen atoms are shown in red, and the nitrogen atoms are shown in blue.