CADD studies on evaluation of cruciferous vegetable components on anti-oxidant activity via Nrf2 pathway
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| Natura: | Recurso digital |
| Lingua: | inglese |
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2025
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| _version_ | 1866902198823157760 |
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| author | Apoorva, S Veeresh, B Vanamamalai, Sai Prathyusha Likitha, M Salagondla, Santhosh Rao Pathakala, Naveen |
| author_facet | Apoorva, S Veeresh, B Vanamamalai, Sai Prathyusha Likitha, M Salagondla, Santhosh Rao Pathakala, Naveen |
| contents | <p>The current study directed to progress antioxidant activity of cruciferous vegetable components on adaptor proteins and peroxiredoxins. Nrf2 is a transcription factor (basic leucine zipper protein). Under basal conditions it is located in the cytosol and under unfavourable conditions it translocates into the nucleus and aids in transcriptional activation of cytoprotective genes. Nrf2 plays a crucial role in determining the sensitivity of cells to oxidative stress. Some of the receptor proteins such as 7k2f, 7k2j, 7k2m, 7kiz, 7kj0 has undergone In-silico evaluation with chemical constituents, Sulforphane (Standard) and Glucosinolates (ligand) which are abundantly present in Cruciferous vegetables. To evaluate the receptor-ligand interaction between Brassicaceae chemical constituents and receptor proteins in the activation of Nrf2 pathway; Chemical components of Cruciferous vegetables were constructed by Chemsketch (2022 1.2) and they were subjected to molecular docking using Autodock Vina tools with the respective proteins. The ligand have greater binding affinity with the proteins when compared with Sulforphane and that concluded, Glucosinolates has more interaction towards the proteins when compared to Sulforphane. The results clearly revealed that Cruciferous components have enhanced antioxidant activity in the activation of Nrf2 pathway under extreme oxidative stress conditions.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17149188 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | CADD studies on evaluation of cruciferous vegetable components on anti-oxidant activity via Nrf2 pathway Apoorva, S Veeresh, B Vanamamalai, Sai Prathyusha Likitha, M Salagondla, Santhosh Rao Pathakala, Naveen Nrf2 pathway Keap Reactive oxygen species Oxidative stress In-silico Sulforphane Glucosinolates <p>The current study directed to progress antioxidant activity of cruciferous vegetable components on adaptor proteins and peroxiredoxins. Nrf2 is a transcription factor (basic leucine zipper protein). Under basal conditions it is located in the cytosol and under unfavourable conditions it translocates into the nucleus and aids in transcriptional activation of cytoprotective genes. Nrf2 plays a crucial role in determining the sensitivity of cells to oxidative stress. Some of the receptor proteins such as 7k2f, 7k2j, 7k2m, 7kiz, 7kj0 has undergone In-silico evaluation with chemical constituents, Sulforphane (Standard) and Glucosinolates (ligand) which are abundantly present in Cruciferous vegetables. To evaluate the receptor-ligand interaction between Brassicaceae chemical constituents and receptor proteins in the activation of Nrf2 pathway; Chemical components of Cruciferous vegetables were constructed by Chemsketch (2022 1.2) and they were subjected to molecular docking using Autodock Vina tools with the respective proteins. The ligand have greater binding affinity with the proteins when compared with Sulforphane and that concluded, Glucosinolates has more interaction towards the proteins when compared to Sulforphane. The results clearly revealed that Cruciferous components have enhanced antioxidant activity in the activation of Nrf2 pathway under extreme oxidative stress conditions.</p> |
| title | CADD studies on evaluation of cruciferous vegetable components on anti-oxidant activity via Nrf2 pathway |
| topic | Nrf2 pathway Keap Reactive oxygen species Oxidative stress In-silico Sulforphane Glucosinolates |
| url | https://doi.org/10.5281/zenodo.17149188 |