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1.
Saudi Pharm J ; 32(1): 101916, 2024 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-38178850

RESUMEN

Glycation is the non-enzymatic adduct formation between reducing sugars or dicarbonyls with proteins and is a crucial molecular event under hyperglycaemic conditions of diabetes. The accumulation of advanced glycation end products (AGEs) due to glycation of proteins has been implicated in several diseases associated with ageing and diabetes. Thus, investigating the antiglycation potential of some trace metal ions (Manganese; Mn2+, and Zinc; Zn2+) and polyphenolic extract of chickpea seeds (PEC) on the methylglyoxal (MGO) induced glycation of a phytocystatin isolated from chickpea was taken up to find an inexpensive and non-toxic therapeutic means of medicating protein glycation and associated diabetic complications. The current study focused on the comparative analyses of these micronutrients and herbal extracts in inhibiting protein glycation and AGEs formation in a quest to develop nutraceuticals for managing diabetes. The effect of metals (Mn2+, Zn2+) and PEC on protein glycation was assessed by different techniques, i.e., glycation-specific AGE fluorescence and absorbance, thiol protease inhibitory activity assay, and conformational alterations by spectroscopic assays. This study revealed the significant anti-glycation potencies of Mn2+, Zn2+, and PEC against the MGO-induced glycation of CPC, which might pave the way for resolving pathological complications of diabetes by combining higher levels of efficacy, selectivity, and safety in humans. Moreover, characterization and identification of different AGEs formed during the glycation process in diabetics was done to apply the same for determining the onset of glycation at the early stage so that appropriate steps be taken to address the menace of diabetic complications.

2.
Colloids Surf B Biointerfaces ; 225: 113233, 2023 May.
Artículo en Inglés | MEDLINE | ID: mdl-36931044

RESUMEN

Cystatin superfamily members, by virtue of their thiol protease regulatory properties, show involvement in myriad physiological processes important for survival and well-being. The current study involves urea-induced denaturation of a novel variant of the cystatin superfamily, rai seed cystatin (RSC), employing a variety of biophysical assays in order to characterize different folding intermediates generated on unfolding. Urea as a denaturant presented the passage of RSC through a series of events resulting in the loss of RSC functional capability, accompanied by changes in the archetype at secondary and tertiary structural levels, as evident from protease inhibitory, UV absorption, and intrinsic fluorescence assays, respectively. ANS fluorescence also revealed routing of RSC through discrete multiple sub-states thus presenting the generation of intermediate states somewhat close to the pre-molten globule and/or molten globule forms of RSC. Furthermore, far-UV circular dichroism analysis revealed a concentration-dependent gradual loss in typical -helical RSC peaks, indicating a nearly 50 % loss in secondary structural elements around 5 M urea treatment. The study also reports the possible role of glycerol in the refolding and/or reactivation of the urea unfolded RSC form. Glycerol presented itself as a potent structural stabilizer as it assisted in the refolding and reactivation of the unfolded RSC in a dosage-dependent manner, concomitantly paving the way for unravelling the mechanistic approach involved in the phenomenon, which can facilitate future studies.


Asunto(s)
Cistatinas , Pliegue de Proteína , Glicerol , Guanidina/farmacología , Urea/farmacología , Urea/química , Espectrometría de Fluorescencia , Desnaturalización Proteica , Dicroismo Circular , Cistatinas/química , Péptido Hidrolasas
3.
Molecules ; 27(10)2022 May 10.
Artículo en Inglés | MEDLINE | ID: mdl-35630545

RESUMEN

Tyrosine-protein kinase Yes (YES1) belongs to the Tyrosine-protein kinase family and is involved in several biological activities, including cell survival, cell-cell adhesion, cell differentiation, and cytoskeleton remodeling. It is highly expressed in esophageal, lung, and bladder cancers, and thus considered as an attractive drug target for cancer therapy. In this study, we performed a virtual screening of phytoconstituents from the IMPPAT database to identify potential inhibitors of YES1. Initially, the molecules were retrieved on their physicochemical properties following the Lipinski rule of five. Then binding affinities calculation, PAINS filter, ADMET, and PASS analyses followed by an interaction analysis to select safe and clinically better hits. Finally, two compounds, Glabrene and Lupinisoflavone C (LIC), with appreciable affinities and a specific interaction towards the AlphaFold predicted structure of YES1, were identified. Their time-evolution analyses were carried out using an all-atom molecular dynamics (MD) simulation, principal component analysis, and free energy landscapes. Altogether, we propose that Glabrene and LIC can be further explored in clinical settings to develop anticancer therapeutics targeting YES1 kinase.


Asunto(s)
Simulación de Dinámica Molecular , Proteínas Tirosina Quinasas , Simulación del Acoplamiento Molecular , Tirosina
4.
J Biomol Struct Dyn ; 40(23): 12506-12515, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-34488562

RESUMEN

A cysteine proteinase inhibitor has been purified by affinity chromatography from the liver of buffalo. Liver cystatin is subjected to incubation at low pH with co-solvent TFE, where we have studied the effect on the conformation, activity and tendency to form aggregates or fibrils. ANS fluorescence was used to study conformational changes. The fibril formation and aggregation was studied using ThT assay, CD, FTIR and fluorescence spectroscopy. At pH 3.0 there was no fibril formation though aggregates were formed but in presence of TFE fibrils appeared. At pH 2.0 and 1.0, TFE induced rapid fibril formation compared to only acid induced state as assessed by Thioflavin T (ThT) fluorescence.TFE stabilized each of the three acid induced intermediates at predenaturational concentrations (20%) and accelerated fibril formation. Solvent conditions had a profound effect on the tendency of liver cystatin to produce fibrils and aggregation.Communicated by Ramaswamy H. Sarma.


Asunto(s)
Cistatinas , Cistatinas/química , Estructura Secundaria de Proteína , Amiloide/química , Solventes , Hígado , Dicroismo Circular
5.
Int J Biol Macromol ; 163: 1844-1858, 2020 Nov 15.
Artículo en Inglés | MEDLINE | ID: mdl-32956747

RESUMEN

Non-enzymatic glycation tempted AGEs of proteins are currently at the heart of a number of pathological conditions. Production of chemically stable AGEs can permanently alter the protein structure and function, concomitantly leading to dilapidated situations. Keeping in perspective, present study aims to report the glycation induced structural and functional modification of a cystatin type isolated from rai mustard seeds, using RSC-glucose and RSC-ribose as model system. Among the sugars studied, ribose was found to be most potent glycating agent as evident from different biophysical assays. During the course of incubation, RSC was observed to pass through a series of structural intermediates as revealed by circular dichroism, altered intrinsic fluorescence and high ANS binding. RSC incubation with ribose post day 36 revealed the possible buildup of ß structures as observed in CD spectral analysis, hinting towards the generation of aggregated structures in RSC. High thioflavin T fluorescence and increased Congo red absorbance together with enhanced turbidity of the modified form confirmed the aggregation of RSC. The study further revealed anti-glycation and anti-aggregation potential of amino acids; aspartic acid and arginine as they prevented and/or slowed down the process of AGEs and ß structure buildup in a concentration dependent manner with arginine proving to be the most effective one.


Asunto(s)
Arginina/química , Ácido Aspártico/química , Agregado de Proteínas , Proteínas/química , Dicroismo Circular , Fluorescencia , Glucosa/química , Glicosilación , Planta de la Mostaza/química , Ribosa/química , Espectrometría de Fluorescencia
6.
Int J Biol Macromol ; 161: 187-193, 2020 Oct 15.
Artículo en Inglés | MEDLINE | ID: mdl-32526295

RESUMEN

Protein aggregation and glycation are directly associated with many pathological conditions including several neurodegenerative disorders. This study investigates the potential of naturally occurring plant product, Rosmarinic acid (RA), to inhibit the glycation and aggregation process. In this study, we report that varying concentrations of methylglyoxal (MG) induce advanced glycation end products (AGEs) and aggregates formation in HSA in vitro on day 6 and day 8, respectively. AGEs specific fluorescence confirmed the formation of AGEs in HSA in the presence of MG and further characterized the inhibitory potential of RA. It was found that the presence of RA prevented AGEs formation in vitro. Further, aggregates of HSA were characterized employing multi spectroscopic and microscopic techniques and RA was found to inhibit this process. This study proposes that RA could be a potential natural molecule to treat disorders where AGEs and aggregates of proteins play a pivotal role.


Asunto(s)
Cinamatos/química , Depsidos/química , Proteínas/química , Albúmina Sérica Humana/química , Productos Finales de Glicación Avanzada/química , Productos Finales de Glicación Avanzada/metabolismo , Glicosilación , Humanos , Agregado de Proteínas , Conformación Proteica , Proteínas/metabolismo , Albúmina Sérica Humana/metabolismo , Análisis Espectral , Ácido Rosmarínico
7.
Protein Pept Lett ; 27(8): 725-735, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32003651

RESUMEN

BACKGROUND: Under certain circumstances, the path for protein folding deviates and attains an alternative path forming misfolded states, which are the key precursors for protein aggregation. Protein aggregation is associated with variety of diseases and leads to the cytotoxicity. These protein aggregate related diseases have been untreated so far. However, extensive attempts have been applied to develop anti-aggregating agents as possible approaches to overcome protein aggregation. Different types of substances have been reported to halt or decrease the formation of ordered protein aggregates both in vitro and in vivo, such as polyphenols and metal ions. OBJECTIVE: In the present study the in vitro aggregation of human serum albumin (HSA) by using a reactive dicarbonyl glyoxal has been investigated, simultaneously an attempt has been done to inhibit the glyoxal (GO) induced aggregation of (HSA) by caffeic acid (CA). METHODS: Different methods have been employed to investigate the process, fluorescence spectroscopy, circular dichroism, cango red binding assay, thioflavin T dye binding, turbidimetric analysis, docking study and transmission electron microscopy. RESULTS: Results have shown that elevated concentration of GO forms aggregates of HSA, and the activity of CA suggested the possibility of inhibiting the HSA aggregation at higher concentrations, and this compound was found to have an anti-aggregation property. CONCLUSION: The present study explained that micro molar concentrations of CA inhibits the aggregation of HSA and showed pronounced anti-aggregation effect at increasing concentrations in the presence of GO which is elevated in diabetic and hyperglycaemia conditions.


Asunto(s)
Ácidos Cafeicos/química , Glioxal/química , Agregado de Proteínas , Pliegue de Proteína , Albúmina Sérica Humana/química , Humanos
8.
J Biomol Struct Dyn ; 38(7): 2171-2196, 2020 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-31107181

RESUMEN

Cystatins are the thiol Proteinase inhibitors, present ubiquitously in mammalian body. They prevent unwanted proteolysis and play important role in several diseases. Regulation of cysteine Proteinase and their inhibitors is of utmost importance in neurodegenerative diseases like Alzheimer, amyloid angiopathy and in many other diseases. The action of these cysteine proteases is biologically controlled by proteinase inhibitors namely cystatins(cys) they constitute a superfamily of homologous proteins. The major role of cystatins is to protect the organism against endogenous proteases released from lysosomes, invading microorganisms and parasites that use cysteine proteases to enter the body. An enormous progress has been made in understanding of protein degradation process under normal and pathological conditions; in fact proteases are now clearly viewed as important drug targets. Some studies have suggested that cystatin C is a target for intervention in neurological disorders because its expression increases in response to human neurological disorders and in animal models of neurodegenerative states. Although, these studies did not clarify whether CysC up-regulation is a pathogenic factor in neurodegenerative disorders or whether it represents a neuroprotective compensatory response of the organisms aimed to prevent progression of the disease. However, for other diseases in some cases cystatins other than cys C are up regulated and in some it is down regulated.Cystatins have been implicated in the processes of neuronal degeneration and repair of the nervous system. Both CysC and CysB are potent, reversible inhibitors of most of the currently known cathepsins. The extent of proteolytic activity at any given time and location is the result of a balance between active proteases and physiological inhibitors. Uncontrolled proteolysis as a result of imbalance between active proteases and their endogenous inhibitors has been associated with neuronal cell death in different neuronal diseases, including brain tumors, stroke, some forms of epilepsy, Alzheimer's disease, and neurological autoimmune diseases.An antidepressant is a psychiatric medication used to alleviate mood disorders, major depression and other brain diseases. Drugs including the monoamine oxidase inhibitors (MAOIs), tricyclic antidepressants (TCAs), and serotonin-norepinephrine reuptake inhibitors (SNRIs) are most commonly used antidepressant. They are also used to treat other conditions, such as anxiety disorders, obsessive compulsive disorder, eating disorders, and chronic pain. Although the mechanisms of the action of these antidepressants are not precisely understood, their principal target of action is at the monoamine transporter proteins located at nerve endings. Monoamine neurotransmitter transporters act to terminate synaptic neurotransmission. Selective serotonin reuptake inhibitors or SSRIs are also most widely used class of antidepressants. They work by increasing the level of serotonin in the brain. SSRIs have fewer and milder side effects, fewer drug interactions, and are much less likely to be associated with suicide than TCAs.These antidepressants shows binding when incubated with cystatin, presenting the involvement of these antidepressant in cascade of disease, as leaving no cystatin to inhibit the cathepsin showing the myriad side effect after the administration of antidepressant. This might be one of the reason in the mechanism of action of antidepressant.So this review expound about the role of cystatins in neurological diseases which is considered to be highly significant as it pave the way for commanding tool in the drug design.Communicated by Ramaswamy H. Sarma.


Asunto(s)
Enfermedad de Alzheimer , Angiopatía Amiloide Cerebral , Cistatinas , Proteasas de Cisteína , Enfermedad de Alzheimer/tratamiento farmacológico , Animales , Antidepresivos , Encéfalo/metabolismo , Cistatinas/metabolismo , Humanos
9.
J Biomol Struct Dyn ; 38(10): 2955-2964, 2020 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-31389299

RESUMEN

Drug protein interactions have gained considerable attention over the past many years. In the current communication the association of muscle cystatin (MC) with anti-rheumatic drugs methotrexate and dexamethasone was studied by thiol proteinase inhibitor assay, ultra violet (UV) absorption, fluorescence spectroscopy, and fluorescence transform infra-red spectroscopy (FTIR). A static pattern of quenching was noticed between muscle cystatin and methotrexate (MTX). Binding constant (Ka) of methotrexate to muscle cystatin was found to be 1 × 10-7 M-1 and the stoichiometry of binding was calculated to be one. Fluorescence measurement of the emission quenching reveals that the quenching process of cystatin by dexamethasone (DXN) was also static. The stoichiometry of binding and binding constant was also obtained. Additional evidence regarding MTX-MC and DXN-MC was obtained from UV spectroscopy and FTIR spectroscopic results. Such spectroscopic studies would help in modelling new candidate drugs for rheumatoid arthritis based on their cystatin binding profile.Communicated by Ramaswamy H. Sarma.


Asunto(s)
Cistatinas , Metotrexato , Cistatinas/metabolismo , Dexametasona , Músculos/metabolismo , Unión Proteica , Espectrometría de Fluorescencia
10.
J Mol Recognit ; 32(10): e2787, 2019 10.
Artículo en Inglés | MEDLINE | ID: mdl-31180171

RESUMEN

Phytocystatins are cysteine proteinase inhibitors ubiquitously present in plants and animals. They are known to carry out various significant physiological functions and also maintain the balance of protease-antiprotease activity. In the present disquisition, a phytocystatin after preliminary treatment has been isolated and purified to homogeneity from soybean (Glycine max) by a simple two-step stratagem using ammonium sulfate fractionation and gel filtration chromatography performed on Sephacryl S-100-HR. Soybean phytocystatin (SBPC) was purified with a fold purification of 635 and percent yield of 77.6%. A single band was observed on native gel electrophoresis confirming the homogeneity of the purified SBPC. The molecular weight of SBPC was found to be 19.05 kDa as determined by SDS-PAGE. The SBPC was found to be devoid of carbohydrate moieties and sulfhydryl group content. The binding stoichiometry of SBPC-papain interaction was determined by isothermal calorimetry suggesting 1:1 complex, and the value of binding constant (K) was found to be 2.78 × 105  M-1 The affinity of binding (Kd ) value obtained through ITC was 3.59 × 10-6  M. The purified SBPC was found to be stable in the pH range of 3 to 7 and is thermostable up to 50°C. The UV-visible and fluorescence studies showed significant changes in the conformation upon the formation of the SBPC-papain complex. Furthermore, fluorescence spectroscopy, ANS binding, and caseinolytic activity assay were conducted out to explore the effect of metal ions on SBPC which showed that there was a loss in the inhibitory activity along with conformational changes of SBPC upon complex formation with Cd+2 and Ni+2 .


Asunto(s)
Cadmio/metabolismo , Cistatinas/metabolismo , Glycine max/química , Níquel/metabolismo , Carbohidratos/análisis , Cistatinas/aislamiento & purificación , Inhibidores de Cisteína Proteinasa/metabolismo , Estabilidad de Enzimas , Concentración de Iones de Hidrógeno , Iones , Peso Molecular , Papaína/metabolismo , Unión Proteica , Semillas/química , Espectrometría de Fluorescencia , Espectrofotometría Ultravioleta , Compuestos de Sulfhidrilo/análisis , Temperatura
11.
Int J Biol Macromol ; 133: 945-956, 2019 Jul 15.
Artículo en Inglés | MEDLINE | ID: mdl-31005690

RESUMEN

Abiotic stress induced by heavy metals retards the growth and development of plants. Therefore, it is essential to have an insight into the potential toxic effects of heavy metals. The present article investigates the effect of zinc and cadmium on the structure and function of garlic phytocystatin (GPhyCys). The cysteine proteinase inhibitory assay showed a reduction in the inhibitory activity upon binding with zinc and cadmium. UV-vis absorption spectroscopy revealed the complex formation of zinc and cadmium with garlic phytocystatin. Fluorescence quenching experiment confirmed the quenching of fluorophores upon binding of zinc and cadmium. Synchronous and 3-dimensional fluorescence spectroscopy suggest the alteration in the microenvironment around aromatic residues of garlic phytocystatin upon binding with the above metals. Circular dichroism showed a reduction in the alpha-helical content of native garlic phytocystatin. Scanning electron micrographs showed the morphological changes in the native garlic phytocystatin upon addition of zinc and cadmium. The observations confirmed the alteration in structure and conformation of garlic phytocystatin upon interaction with zinc and cadmium. It can be safely concluded that the high concentration of zinc and cadmium can alter the functioning of cysteine proteinase present in garlic and affects the growth and development of plants.


Asunto(s)
Cadmio/metabolismo , Cadmio/farmacología , Cistatinas/metabolismo , Ajo/metabolismo , Estrés Fisiológico/efectos de los fármacos , Zinc/metabolismo , Zinc/farmacología , Cistatinas/química , Ajo/efectos de los fármacos , Ajo/fisiología , Unión Proteica , Conformación Proteica/efectos de los fármacos
12.
Curr Pharm Des ; 25(2): 174-183, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30864507

RESUMEN

BACKGROUND: Protein kinases are the enzymes involved in phosphorylation of different proteins which leads to functional changes in those proteins. They belong to serine-threonine kinases family and are classified into the AGC (Protein kinase A/ Protein kinase G/ Protein kinase C) families of protein and Rho-associated kinase protein (ROCK). The AGC family of kinases are involved in G-protein stimuli, muscle contraction, platelet biology and lipid signaling. On the other hand, ROCK regulates actin cytoskeleton which is involved in the development of stress fibres. Inflammation is the main signal in all ROCK-mediated disease. It triggers the cascade of a reaction involving various proinflammatory cytokine molecules. METHODS: Two ROCK isoforms are found in mammals and invertebrates. The first isoforms are present mainly in the kidney, lung, spleen, liver, and testis. The second one is mainly distributed in the brain and heart. RESULTS: ROCK proteins are ubiquitously present in all tissues and are involved in many ailments that include hypertension, stroke, atherosclerosis, pulmonary hypertension, vasospasm, ischemia-reperfusion injury and heart failure. Several ROCK inhibitors have shown positive results in the treatment of various disease including cardiovascular diseases. CONCLUSION: ROCK inhibitors, fasudil and Y27632, have been reported for significant efficiency in dropping vascular smooth muscle cell hyper-contraction, vascular inflammatory cell recruitment, cardiac remodelling and endothelial dysfunction which highlight ROCK role in cardiovascular diseases.


Asunto(s)
Enfermedades Cardiovasculares/enzimología , Quinasas Asociadas a rho/fisiología , Animales , Enfermedades Cardiovasculares/tratamiento farmacológico , Humanos , Transducción de Señal , Quinasas Asociadas a rho/antagonistas & inhibidores
13.
Int J Biol Macromol ; 127: 271-277, 2019 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-30654031

RESUMEN

Glutathione reductase (GR) is a flavoprotein that catalyses the reduction of oxidized glutathione (GSSG) to reduced glutathione (2GSH) in the presence of coenzyme NADPH. The importance of glutathione stems from the fact that it serves an important role in various metabolic processes. Plants growing in highly polluted areas are exposed to higher concentration of metal ions; thereby feeling abiotic stress and affecting various regulatory enzyme activities. In this study, effect of metal ions has been studied on GR. Phytocystatins show an increased expression in abiotic stress conditions. Here in, the effect of cystatin isolated from yellow mustard seeds (YMP) on heavy metals induced conformational changes in GR was investigated making use of GR activity assay, UV-absorption spectroscopy, fluorescence spectroscopy, FTIR, CD, ITC and SEM analysis. The results obtained clearly reveals that metal ions like Cu2+ and Zn+2 induces concentration dependent conformational changes in GR; YMP restores these alterations in way decreasing the effective concentration of metal ions.


Asunto(s)
Cistatinas/química , Glutatión Reductasa/química , Metales Pesados/química , Planta de la Mostaza/química , Proteínas de Plantas/química , Semillas/química , Cistatinas/aislamiento & purificación , Proteínas de Plantas/aislamiento & purificación
14.
Int J Biol Macromol ; 124: 1281-1291, 2019 Mar 01.
Artículo en Inglés | MEDLINE | ID: mdl-30521904

RESUMEN

Thiol Protease inhibitors (cystatins) are endogenous natural inhibitors of cysteine proteases. They are present in all mammalians cells and body fluids. Cystatin are allocated into three major families. Family -I stefins, family -II cystatins and family -III kininogens, according to their amino acid sequence, molecular weight, carbohydrate content and disulphide bonds. It has been investigated that thiol proteases (cathepsin) and their endogenous inhibitor, cystatins have been closely associated with diseases like Alzheimer's, Prions, neurodegenerative diseases, cancer and diabetes. Photodynamic effect of various sensitizers' have long been applied to delineate structural and functional properties of biologically active proteins. Flavins are well known to photo oxidize amino acids which effects conformation of proteins. Riboflavin (Vit B2) with a recommended daily requirement of approximately 2-3 mg is a yellow pigment, It is widely distributed in human tissues and blood, in both free and conjugated forms. In the present Study it has been shown that cystatin purified from buffalo brain (BC) is susceptible to reactive oxygen species generated by photo activation of riboflavin. It was observed that Photo activated riboflavin leads to inactivation of BC. Major Loss of tryptophan intensity was observed in the presence of purified thiol protease inhibitor upon incubation with 50 µM of riboflavin. In order to inspect the type of reactive oxygen species involved in inactivation of the inhibitor, different scavenger's were used namely glucose, potassium Iodide, sodium azide, manitol, thiourea, sodium benzoate, curcumin, quercetin, ascorbic acid and uric acid. It was found that Glucose, Potassium Iodide and sodium azide, have preventive effect on photo inactivation of the purified cystatin whilst other scavengers illustrated diminutive defensive effect.


Asunto(s)
Cistatinas/química , Depuradores de Radicales Libres/química , Radicales Libres/antagonistas & inhibidores , Riboflavina/química , Animales , Ácido Ascórbico/química , Química Encefálica , Búfalos , Curcumina/química , Radicales Libres/química , Glucosa/química , Cinética , Luz , Manitol/química , Oxidación-Reducción , Procesos Fotoquímicos , Yoduro de Potasio/química , Quercetina/química , Riboflavina/efectos de la radiación , Azida Sódica/química , Benzoato de Sodio/química , Tiourea/química , Ácido Úrico/química
16.
J Biomol Struct Dyn ; 37(9): 2230-2241, 2019 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-30047309

RESUMEN

Carbendazim is a benzimidazole fungicide used to control the fungal invasion. However, its exposure might lead to potential health problems. The present study evaluates the interaction of carbendazim (CAR) with human serum albumin (HSA) which is an important drug carrier protein and plays a very crucial role in the transportation of small molecules. A number of biophysical techniques were employed to investigate the binding of CAR with HSA. The increased UV-absorption of HSA on titrating with CAR suggests the formation of HSA-CAR complex and it could be due to the exposure of aromatic residues. The fluorescence study confirmed that CAR quenches the fluorescence of HSA and showed the static mode of quenching. CAR (50 µM) quenches around 56.14% of the HSA fluorescence. The quenching constant, binding constant, number of binding site and free energy change was calculated by fluorescence quenching experiment. Competitive displacement assay showed Sudlow's site I as the primary binding site of CAR on HSA. The synchronous fluorescence study revealed the perturbation in the microenvironment around tyrosine and tryptophan residues upon binding of CAR to HSA. The circular dichroism results suggested that the binding of CAR to HSA altered its secondary structure. Molecular docking experiment demonstrated the binding of CAR to Sudlow's site I of HSA. Docking studies suggested that the hydrogen bonding, van der Waals and pi-alkyl are playing role in the interaction of CAR with HSA. The study confirmed the conformational changes within HSA upon binding of CAR.


Asunto(s)
Bencimidazoles/química , Carbamatos/química , Fungicidas Industriales/química , Simulación del Acoplamiento Molecular , Albúmina Sérica Humana/química , Termodinámica , Bencimidazoles/metabolismo , Fenómenos Biofísicos , Carbamatos/metabolismo , Dicroismo Circular , Fungicidas Industriales/metabolismo , Humanos , Enlace de Hidrógeno , Unión Proteica , Estructura Secundaria de Proteína , Albúmina Sérica Humana/metabolismo , Espectrometría de Fluorescencia , Espectrofotometría Ultravioleta
17.
J Biomol Struct Dyn ; 37(15): 4120-4131, 2019 09.
Artículo en Inglés | MEDLINE | ID: mdl-30394179

RESUMEN

Oxyfluorfen (2-chloro-1-(3-ethoxy-4-nitrophenoxy)-4-(trifluoromethyl)benzene) is a nitrophenyl ether herbicide. Phytocystatins are crucial plant proteins which regulate various physiological processes and are also responsible for maintaining protease-antiprotease balance within plants. Thus, the present article deciphers the interaction of oxyfluorfen with garlic phytocystatin (GPC) through various spectroscopic and calorimetric techniques. The cysteine proteinase inhibitory assay was done to assess the inhibitory action of GPC in the presence of oxyfluorfen. The GPC loses its inhibitory activity in the presence of oxyfluorfen. The complex formation of GPC-oxyfluorfen was shown by UV absorption spectroscopy. The intrinsic fluorescence experiment affirmed the quenching of GPC in the presence of oxyfluorfen. The Stern-Volmer quenching constant and binding constant was obtained as 6.89 × 103 M-1 and 9.72 × 103 M-1, respectively. Synchronous fluorescence showed the alteration in the microenvironment around tyrosine residues. 3D fluorescence suggested the perturbation in the polarity around aromatic residues. The isothermal titration experiment suggests that the interaction of oxyfluorfen with GPC is a thermodynamically favorable reaction. Secondary structure alteration of GPC in the presence of oxyfluorfen was studied by circular dichroism (CD). The CD result showed a reduction in the α-helical content of GPC on interaction with oxyfluorfen. Consequently, all these outcomes affirmed the formation of GPC-oxyfluorfen complex along with the structural and conformational alteration. This study identifies and signifies that the exposure of oxyfluorfen induces stress within the plant system. Communicated by Ramaswamy H. Sarma.


Asunto(s)
Cistatinas/química , Ajo , Éteres Difenilos Halogenados/química , Calorimetría , Dicroismo Circular , Ajo/química , Estructura Molecular , Análisis Espectral
18.
J Biomol Struct Dyn ; 37(11): 2949-2959, 2019 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-30044189

RESUMEN

Cystatins are the inhibitors of thiol proteinases and are ubiquitously present in mammalian system. In brain, they put off unwanted proteolysis and are also involved in several neurodegenerative diseases. In the present study, it was demonstrated that photo-activated HOCl-induced modifications in brain cystatin leading to its inactivation and degradation due to hydroxyl radicals. It has been shown that oxidation of cystatin by ROS in vivo leads to oxidative modification which may direct the damage of this significant protein, as it is so well pronounced in vitro. The interplay between free radicals, antioxidants and co-factors is important in maintaining health, aging and age-related diseases. Body's endogenous antioxidant systems stabilize free radical-induced oxidative stress by the ingestion of exogenous antioxidants. If the generation of free radicals goes beyond the protective effect of antioxidants, this can cause oxidative damage which accumulates during the life cycle and has been implicated in aging and age-related diseases such as cardiovascular disease, cancer, neurodegenerative disorders and other chronic conditions. Activation of neutrophils in certain diseases (e.g., inflammatory conditions and atherosclerosis) results in the production of highly reactive species, such as OH• and the release of the enzyme myeloperoxidase. Stimulated monocytes and neutrophils generate hypochlorite (HOCl) via the release of the enzyme myeloperoxidase and hydrogen peroxide. Hypochlorous acid (HOCl) is a potent oxidant formed by myeloperoxidase that causes aggregation of many proteins and damage of proteins by reaction with amino-acid side-chains or backbone cleavage. Communicated by Ramaswamy H. Sarma.


Asunto(s)
Antioxidantes/química , Encéfalo/metabolismo , Cistatinas/química , Cistatinas/metabolismo , Radicales Libres/química , Ácido Hipocloroso/química , Oxidantes/química , Animales , Encéfalo/ultraestructura , Búfalos , Microscopía Electrónica de Transmisión , Oxidación-Reducción , Proteolisis
19.
Int J Biol Macromol ; 125: 1128-1139, 2019 Mar 15.
Artículo en Inglés | MEDLINE | ID: mdl-30578901

RESUMEN

Phytocystatins or plant cystatins belong to a group of thiol protease inhibitors present ubiquitously in living system. They play a crucial role in cellular protein turnover thereby showing involvement in a wide array of physiological processes in plants. With wide importance and tremendous potential applications in the fields of genetic engineering, medicine, agriculture, and food technology, it is imperative to identify and isolate such protease inhibitors from different cheap and easily available plant sources. Present study focuses on the isolation, purification and characterization of a cystatin like thiol protease inhibitor from the seeds of Brassica nigra (rai mustard) following a simple two-step method using ammonium sulphate fractionation (40-60%) and gel filtration chromatography on Sephacryl S-100HR column with 51.85% yield and 151.50 fold purification. Rai seed cystatin (RSC) gave a molecular mass of ~19.50 kDa as determined by SDS PAGE and gel filtration behaviour. Stokes radius and diffusion coefficient of RSC were 19.80 Šand 11.21 × 10-7 cm2 s-1 respectively. Kinetic analysis revealed a reversible and non-competitive mode of inhibition with RSC showing highest inhibition towards papain (Ki = 1.62 × 10-7 M) followed by ficin and bromelain. Purified RSC possessed an α helical content of 35.29% as observed by far-UV CD spectroscopy. UV, fluorescence, CD and FTIR spectral studies revealed a significant conformational alteration in one or both the proteins upon RSC-papain complex formation. Isothermal Titration Calorimetry (ITC) analysis further revealed the values for different thermodynamic parameters involved in complex formation, indicating the process to be enthalpically as well as entropically driven with forces involved in binding the proteins to be electrostatic in nature. Additionally binding stoichiometry (N) of 0.95 ±â€¯0.08 sites indicates that each molecule of RSC is surrounded by nearly one papain molecule.


Asunto(s)
Cistatinas/química , Cistatinas/aislamiento & purificación , Planta de la Mostaza/química , Péptido Hidrolasas/química , Inhibidores de Proteasas/química , Inhibidores de Proteasas/aislamiento & purificación , Compuestos de Sulfhidrilo/química , Dominio Catalítico , Cistatinas/farmacología , Estabilidad de Medicamentos , Electroforesis en Gel de Poliacrilamida , Activación Enzimática , Hidrodinámica , Concentración de Iones de Hidrógeno , Cinética , Peso Molecular , Inhibidores de Proteasas/farmacología , Análisis Espectral , Relación Estructura-Actividad , Termodinámica
20.
Biochim Biophys Acta Proteins Proteom ; 1866(9): 989-1000, 2018 09.
Artículo en Inglés | MEDLINE | ID: mdl-29964207

RESUMEN

Hyperglycaemic conditions facilitate the glycation of serum proteins which may have predisposition to aggregation and thus lead to complications. The current study investigates the glycation induced structural and functional modifications of chickpea cystatin (CPC) as well as biological toxicity of the modified protein forms, using CPC-glucose as a model system. Several structural intermediates were formed during the incubation of CPC with glucose (day 4, 8, 12, & 16) as revealed by circular dichroism (CD), altered intrinsic fluorescence, and high ANS binding. Further incubation of CPC with glucose (day 21) formed abundant ß structures as revealed by Fourier transform infrared spectroscopy and CD analysis which may be due to the aggregation of protein. High thioflavin T fluorescence intensity and increased Congo red absorbance together with enhanced turbidity and Rayleigh scattering by this modified form confirmed the aggregation. Electron microscopy finally provided the valid physical authentication about the presence of aggregate structures. Functional inactivation of glucose incubated CPC was also observed with time. Single cell electrophoresis of lymphocytes and plasmid nicking assays in the presence of modified CPC showed the DNA damage which confirmed its biological toxicity. Hence, our study suggests that glycation of CPC not only leads to structural and functional alterations in proteins but also to biotoxic AGEs and aggregates.


Asunto(s)
Proteínas Sanguíneas/química , Cistatinas/química , Glucosa/química , Conformación Molecular , Conformación Proteica , Toxinas Biológicas/química , Benzotiazoles , Dicroismo Circular , Daño del ADN , Fluorescencia , Glicosilación , Hiperglucemia/inducido químicamente , Hiperglucemia/metabolismo , Linfocitos , Unión Proteica , Espectroscopía Infrarroja por Transformada de Fourier
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