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Saini, D. K.

Publications and source records attributed to Saini, D. K..

2 recordsLinked to original sources

The histidine kinase PdtaS is a cyclic di-GMP binding metabolic sensor that controls mycobacterial adaptation to nutrient deprivation

Cell signalling relies on second messengers to transduce signals from the sensory apparatus to downstream components of the signalling pathway. In bacteria, one of the most important and ubiquitous second messengers is the small molecule cyclic diguanosine monophosphate (c-di-GMP). While the biosynthesis, degradation and regulatory pathways controlled by c-di-GMP are well characterized, the mechanisms through which c-di-GMP controls these processes is not completely understood. Here we present the first report of a c-di-GMP regulated sensor histidine kinase previously named PdtaS (Rv3220c), which binds to c-di-GMP at sub-micromolar concentrations, subsequently perturbing signalling of the PdtaS-PdtaR (Rv1626) two component system. Aided by biochemical analysis, molecular docking and structural modelling, we have characterized the binding site of c-di-GMP in the GAF domain of PdtaS. We show that a pdtaS knockout in M. smegmatis is severely compromised in growth on amino acid deficient media and exhibits global transcriptional dysregulation. Perturbation of the c-di-GMP-PdtaS-PdtaR axis results in a cascade of cellular changes recorded by a multi-parametric systems approach of transcriptomics, unbiased metabolomics and lipid analyses.\n\nOne-sentence summaryThe universal bacterial second messenger cyclic di-GMP controls the mycobacterial nutrient stress response

microbiology

Sequence Analysis and Homology Modelling of SmHQT Protein, a Key Player in Chlorogenic Acid Pathway of Eggplant

Eggplant is an important vegetable that belongs to family Solanaceae. Fruits of eggplant are rich in phenolic acids. Chlorogenic acid makes up to 90 per cent of total phenolic acids present in the eggplants fruit flesh. Eggplant hydroxycinnamoyl CoA-quinate (SmHQT) is the central enzyme that modulates the last step of the chlorogenic acid pathway of eggplant. Here, we have analysed the sequence of eggplant SmHQT protein in eggplant. The sequence obtained from the NCBI was aligned using MUSCLE. After that, homology modelling was performed using MODELLER 9v15. Model with Dope Z-Score of -1.596 was selected and verified for viability under real conditions using several online tools. Also, the docking was performed with this model. Overall, this could be useful in developing eggplant varieties rich in phenolic acids especially chlorogenic acid.

bioinformatics