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1.
Journal of Zhejiang University. Science. B ; (12): 496-502, 2019.
Article Dans Anglais | WPRIM | ID: wpr-847034

Résumé

Proteins are dynamic, fluctuating between multiple conformational states. Protein dynamics, spanning orders of magnitude in time and space, allow proteins to perform specific functions. Moreover, under certain conditions, proteins can morph into a different set of conformations. Thus, a complete understanding of protein structural dynamics can provide mechanistic insights into protein function. Here, we review the latest developments in methods used to determine protein ensemble structures and to characterize protein dynamics. Techniques including X-ray crystallography, cryogenic electron microscopy, and small angle scattering can provide structural information on specific conformational states or on the averaged shape of the protein, whereas techniques including nuclear magnetic resonance, fluorescence resonance energy transfer (FRET), and chemical cross-linking coupled with mass spectrometry provide information on the fluctuation of the distances between protein domains, residues, and atoms for the multiple conformational states of the protein. In particular, FRET measurements at the single-molecule level allow rapid resolution of protein conformational states, where information is otherwise obscured in bulk measurements. Taken together, the different techniques complement each other and their integrated use can offer a clear picture of protein structure and dynamics.

2.
J. venom. anim. toxins incl. trop. dis ; 25: e20190013, 2019. tab, graf
Article Dans Anglais | LILACS, VETINDEX | ID: biblio-1020024

Résumé

In Brazil and in other tropical areas Zika virus infection was directly associated with clinical complications as microcephaly in newborn children whose mothers were infected during pregnancy and the Guillain-Barré syndrome in adults. Recently, research has been focused on developing new vaccines and drug candidates against Zika virus infection since none of those are available. In order to contribute to vaccine and drug development efforts, it becomes important the understanding of the molecular basis of the Zika virus recognition, infection and blockade. To this purpose, it is essential the structural determination of the Zika virus proteins. The genome sequencing of the Zika virus identified ten proteins, being three structural (protein E, protein C and protein prM) and seven non-structural proteins (NS1, NS2A, NS2B, NS3, NS4A, NS4B and NS5). Together, these proteins are the main targets for drugs and antibody recognition. Here we examine new discoveries on high-resolution structural biology of Zika virus, observing the interactions and functions of its proteins identified via state-of-art structural methodologies as X-ray crystallography, nuclear magnetic resonance spectroscopy and cryogenic electronic microscopy. The aim of the present study is to contribute to the understanding of the structural basis of Zika virus infection at an atomic level and to point out similarities and differences to others flaviviruses.(AU)


Sujets)
Préparations pharmaceutiques , Vaccins , Spectroscopie par résonance magnétique , Virus Zika , Infection par le virus Zika , Cristallographie aux rayons X
3.
Journal of Zhejiang University. Science. B ; (12): 496-502, 2019.
Article Dans Anglais | WPRIM | ID: wpr-776713

Résumé

Proteins are dynamic, fluctuating between multiple conformational states. Protein dynamics, spanning orders of magnitude in time and space, allow proteins to perform specific functions. Moreover, under certain conditions, proteins can morph into a different set of conformations. Thus, a complete understanding of protein structural dynamics can provide mechanistic insights into protein function. Here, we review the latest developments in methods used to determine protein ensemble structures and to characterize protein dynamics. Techniques including X-ray crystallography, cryogenic electron microscopy, and small angle scattering can provide structural information on specific conformational states or on the averaged shape of the protein, whereas techniques including nuclear magnetic resonance, fluorescence resonance energy transfer (FRET), and chemical cross-linking coupled with mass spectrometry provide information on the fluctuation of the distances between protein domains, residues, and atoms for the multiple conformational states of the protein. In particular, FRET measurements at the single-molecule level allow rapid resolution of protein conformational states, where information is otherwise obscured in bulk measurements. Taken together, the different techniques complement each other and their integrated use can offer a clear picture of protein structure and dynamics.


Sujets)
Transfert d'énergie par résonance de fluorescence , Spectroscopie par résonance magnétique , Conformation des protéines , Protéines , Chimie , Physiologie
4.
Fudan University Journal of Medical Sciences ; (6): 799-805, 2017.
Article Dans Chinois | WPRIM | ID: wpr-668594

Résumé

Cryo electron microscopy (cryo-EM) is one of the most important methods in structural biology.In the past five years,cryo-EM has milestone breakthrough due to revolutionary advances in hardware and methodology.The resolution has been pushed to as high as 1.8 (A),which significantly extended the research scope of this method.Single particle reconstruction method has become one of the most exciting fields of structural biology and related subjects.Here we will briefly introduce the history of cryo-EM,recent revolutionary breakthrough,and the facility at Fudan University.

5.
J Biosci ; 2016 June; 41(2): 295-311
Article Dans Anglais | IMSEAR | ID: sea-181590

Résumé

The bromodomains and extra-terminal domain (BET) family proteins recognize acetylated chromatin through their bromodomains (BDs) and help in regulating gene expression. BDs are chromatin ‘readers’: by interacting with acetylated lysines on the histone tails, they recruit chromatin-regulating proteins on the promoter region to regulate gene expression and repression. Extensive efforts have been employed by scientific communities worldwide to identify and develop potential inhibitors of BET family BDs to regulate protein expression by inhibiting acetylated histone (H3/H4) interactions. Several small molecule inhibitors have been reported, which not only have high affinity but also have high specificity to BET BDs. These developments make BET family proteins an important therapeutic targets for major diseases such as cancer, neurological disorders, obesity and inflammation. Here, we review and discuss the structural biology of BET family BDs and their applications in major diseases.

6.
Chinese Journal of Medical Education Research ; (12): 124-126, 2013.
Article Dans Chinois | WPRIM | ID: wpr-432827

Résumé

The research of structural biology is closely related to the field of biotechnology.Carrying out the second class of structural biology will be helpful in learning theoretical knowledge of biotechnology and in improving the teaching quality.Based on our experiences of carrying out the second classroom activities among students majoring in biotechnology,we believe that the selected teaching contents,reasonable classroom design,sufficient preparation before the class,flexible teaching methods and objective after-school summaries are essential for improving the teaching quality.

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