Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/4045
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dc.contributor.authorKhan, Eshanen_US
dc.contributor.authorMishra, Subodh Kumaren_US
dc.contributor.authorKumar, Amiten_US
dc.date.accessioned2022-03-17T01:00:00Z-
dc.date.accessioned2022-03-17T15:31:28Z-
dc.date.available2022-03-17T01:00:00Z-
dc.date.available2022-03-17T15:31:28Z-
dc.date.issued2017-
dc.identifier.citationKhan, E., Mishra, S. K., & Kumar, A. (2017). Emerging methods for structural analysis of protein aggregation. Protein and Peptide Letters, 24(4), 331-339. doi:10.2174/0929866524666170206123150en_US
dc.identifier.issn0929-8665-
dc.identifier.otherEID(2-s2.0-85016106575)-
dc.identifier.urihttps://doi.org/10.2174/0929866524666170206123150-
dc.identifier.urihttps://dspace.iiti.ac.in/handle/123456789/4045-
dc.description.abstractProtein misfolding and aggregation is a key attribute of different neurodegenerative diseases. Misfolded and aggregated proteins are intrinsically disordered and rule out structure based drug design. The comprehensive characterization of misfolded proteins and associated aggregation pathway is prerequisite to develop therapeutics for neurodegenerative diseases caused due to the protein aggregation. Visible protein aggregates used to be the final stage during aggregation mechanism. The structural analysis of intermediate steps in such protein aggregates will help us to discern the conformational role and subsequently involved pathways. The structural analysis of protein aggregation using various biophysical methods may aid for improved therapeutics for protein misfolding and aggregation related neurodegenerative diseases. In this mini review, we have summarized different spectroscopic methods such as fluorescence spectroscopy, circular dichroism (CD), nuclear magnetic resonance (NMR) spectroscopy, Fourier transform infrared spectroscopy (FTIR), and Raman spectroscopy for structural analysis of protein aggregation. We believe that the understanding of invisible intermediate of misfolded proteins and the key steps involved during protein aggregation mechanisms may advance the therapeutic approaches for targeting neurological diseases that are caused due to misfolded proteins. © 2017 Bentham Science Publishers.en_US
dc.language.isoenen_US
dc.publisherBentham Science Publishers B.V.en_US
dc.sourceProtein and Peptide Lettersen_US
dc.subjectalpha synucleinen_US
dc.subjectamyloid beta protein[1-42]en_US
dc.subjectamyloid precursor proteinen_US
dc.subjectamyloiden_US
dc.subjectprotein aggregateen_US
dc.subjectchemical structureen_US
dc.subjectcircular dichroismen_US
dc.subjectconformational transitionen_US
dc.subjectdark exchange saturation transferen_US
dc.subjectfluorescence resonance energy transferen_US
dc.subjectfluorescence spectroscopyen_US
dc.subjecthumanen_US
dc.subjectinfrared nanospectroscopyen_US
dc.subjectinfrared spectroscopyen_US
dc.subjectmolecular stabilityen_US
dc.subjectneurologic diseaseen_US
dc.subjectnuclear magnetic resonance spectroscopyen_US
dc.subjectprotein aggregationen_US
dc.subjectprotein analysisen_US
dc.subjectprotein misfoldingen_US
dc.subjectprotein structureen_US
dc.subjectRaman spectrometryen_US
dc.subjectReviewen_US
dc.subjectsolid state circular dichroic spectroscopyen_US
dc.subjectsynchrotron radiation circular dichroismen_US
dc.subjectthree dimensional imagingen_US
dc.subjectvibrational circular dichroismen_US
dc.subjectchemistryen_US
dc.subjectdegenerative diseaseen_US
dc.subjectmetabolismen_US
dc.subjectmolecular modelen_US
dc.subjectproceduresen_US
dc.subjectprotein conformationen_US
dc.subjectspectroscopyen_US
dc.subjectAmyloiden_US
dc.subjectHumansen_US
dc.subjectModels, Molecularen_US
dc.subjectNeurodegenerative Diseasesen_US
dc.subjectProtein Aggregatesen_US
dc.subjectProtein Conformationen_US
dc.subjectSpectrum Analysisen_US
dc.titleEmerging methods for structural analysis of protein aggregationen_US
dc.typeReviewen_US
Appears in Collections:Department of Biosciences and Biomedical Engineering

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