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  Coherent diffractive imaging; Photoreceptors; Analytical Protein Biochemistry; Coherent diffractive imaging

Lee, H.-H., Cherni, I., Yu, H., Fromme, R., Doran, J. D., Grotjohann, I., et al. (2014). Coherent diffractive imaging; Photoreceptors; Analytical Protein Biochemistry; Coherent diffractive imaging. IUCrJ, 1(5), 305-317. doi:10.1107/S2052252514014900.

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Lee, Ho-Hsien, Author
Cherni, Irene, Author
Yu, HongQi, Author
Fromme, Raimund, Author
Doran, Jeffrey D., Author
Grotjohann, Ingo, Author
Mittman, Michele, Author
Basu, Shibom, Author
Deb, Arpan, Author
Dörner, Katerina, Author
Aquila, Andrew, Author
Barty, Anton, Author
Boutet, Sébastien, Author
Chapman, Henry N., Author
Doak, R. Bruce1, Author           
Hunter, Mark S., Author
James, Daniel, Author
Richard, A. Kirian, Author
Kupitz, Christopher, Author
Lawrence, Robert M., Author
Liu, Haiguang, AuthorNass, Karol, AuthorSchlichting, Ilme, AuthorSchmidt, Kevin E., AuthorSeibert, M. Marvin, AuthorShoeman, Robert L.1, Author           Spence, John C. H., AuthorStellato, Francesco, AuthorWeierstall, Uwe, AuthorWilliams, Garth J., AuthorYoon, Chunhong, AuthorWang, Dingjie , AuthorZatsepin, Nadia A., AuthorHogue, Brenda G., AuthorMatoba, Nobuyuki , AuthorFrommea, Petra , AuthorMor, Tsafrir S., Author more..
Affiliations:
1Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Max Planck Society, ou_1497700              

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Free keywords: HIV-1; X-ray crystallography; cholera toxin B subunit; crystallization; femtosecond nanocrystallography; free-electron lasers; gp41; membrane-proximal region
 Abstract: CTB-MPR is a fusion protein between the B subunit of cholera toxin (CTB) and the membrane-proximal region of gp41 (MPR), the transmembrane envelope protein of Human immunodeficiency virus 1 (HIV-1), and has previously been shown to induce the production of anti-HIV-1 antibodies with antiviral functions. To further improve the design of this candidate vaccine, X-ray crystallography experiments were performed to obtain structural information about this fusion protein. Several variants of CTB-MPR were designed, constructed and recombinantly expressed in Escherichia coli. The first variant contained a flexible GPGP linker between CTB and MPR, and yielded crystals that diffracted to a resolution of 2.3 Å, but only the CTB region was detected in the electron-density map. A second variant, in which the CTB was directly attached to MPR, was shown to destabilize pentamer formation. A third construct containing a polyalanine linker between CTB and MPR proved to stabilize the pentameric form of the protein during purification. The purification procedure was shown to produce a homogeneously pure and monodisperse sample for crystallization. Initial crystallization experiments led to pseudo-crystals which were ordered in only two dimensions and were disordered in the third dimension. Nanocrystals obtained using the same precipitant showed promising X-ray diffraction to 5 Å resolution in femtosecond nanocrystallography experiments at the Linac Coherent Light Source at the SLAC National Accelerator Laboratory. The results demonstrate the utility of femtosecond X-ray crystallography to enable structural analysis based on nano/microcrystals of a protein for which no macroscopic crystals ordered in three dimensions have been observed before.

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Language(s): eng - English
 Dates: 2014-02-042014-06-242014-08-20
 Publication Status: Issued
 Pages: 13
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: Other: 8042
DOI: 10.1107/S2052252514014900
 Degree: -

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Title: IUCrJ
Source Genre: Journal
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Publ. Info: Chester : International Union of Crystallography
Pages: - Volume / Issue: 1 (5) Sequence Number: - Start / End Page: 305 - 317 Identifier: ISSN: 2052-2525