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On the crystal structure thermal evolution of formamidinium lead tribromide, CH(NH<sub>2</sub>)<sub>2</sub>PbBr<sub>3</sub>
Abia, C., López, C. A., Álvarez-Galván, M. C., Canadillas-Delgado, L., Fernández-Díaz, M. T., & Alonso, J. A. (2021). On the crystal structure thermal evolution of formamidinium lead tribromide, CH(NH2)2PbBr3. Journal of Materials Chemistry C, 9(47), 17003-17011. https://doi.org/10.1039/d1tc04642j
Collagen's primary structure determines collagen:HSP47 complex stoichiometry
Abraham, E. T., Oecal, S., Mörgelin, M., Schmid, P. W. N., Buchner, J., Baumann, U., & Gebauer, J. M. (2021). Collagen's primary structure determines collagen:HSP47 complex stoichiometry. Journal of Biological Chemistry, 297(6), 101169 (13 pp.). https://doi.org/10.1016/j.jbc.2021.101169
Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
Abrami, L., Audagnotto, M., Ho, S., Marcaida, M. J., Mesquita, F. S., Anwar, M. U., … van der Goot, F. G. (2021). Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains. Nature Chemical Biology, 17(4), 438-447. https://doi.org/10.1038/s41589-021-00753-2
Engineering nucleosomes for generating diverse chromatin assemblies
Adhireksan, Z., Sharma, D., Lee, P. L., Bao, Q., Padavattan, S., Shum, W. K., … Davey, C. A. (2021). Engineering nucleosomes for generating diverse chromatin assemblies. Nucleic Acids Research, 49(9), E52 (12 pp.). https://doi.org/10.1093/nar/gkab070
Engineering of a functional γ-tocopherol transfer protein
Aeschimann, W., Kammer, S., Staats, S., Schneider, P., Schneider, G., Rimbach, G., … Stocker, A. (2021). Engineering of a functional γ-tocopherol transfer protein. Redox Biology, 38, 101773 (11 pp.). https://doi.org/10.1016/j.redox.2020.101773
Fragment-based lead discovery to identify novel inhibitors that target the ATP binding site of pyruvate dehydrogenase kinases
Akaki, T., Bessho, Y., Ito, T., Fujioka, S., Ubukata, M., Mori, G., … Adachi, T. (2021). Fragment-based lead discovery to identify novel inhibitors that target the ATP binding site of pyruvate dehydrogenase kinases. Bioorganic and Medicinal Chemistry, 44, 116283 (15 pp.). https://doi.org/10.1016/j.bmc.2021.116283
Purification of the key enzyme complexes of the anammox pathway from DEMON sludge
Akram, M., Dietl, A., Müller, M., & Barends, T. R. M. (2021). Purification of the key enzyme complexes of the anammox pathway from DEMON sludge. Biopolymers, 112(6), e23428 (11 pp.). https://doi.org/10.1002/bip.23428
Specificity of small <em>c</em>-type cytochromes in anaerobic ammonium oxidation
Akram, M., Bock, J., Dietl, A., & Barends, T. R. M. (2021). Specificity of small c-type cytochromes in anaerobic ammonium oxidation. ACS Omega, 6(33), 21457 (8 pp.)-21464. https://doi.org/10.1021/acsomega.1c02275
Biosynthesis of the tricyclic aromatic type II polyketide rishirilide: new potential third ring oxygenation after three cyclization steps
Alali, A., Zhang, L., Li, J., Zuo, C., Wassouf, D., Yan, X., … Bechthold, A. (2021). Biosynthesis of the tricyclic aromatic type II polyketide rishirilide: new potential third ring oxygenation after three cyclization steps. Molecular Biotechnology, 23, 502-514. https://doi.org/10.1007/s12033-021-00314-x
Discovery, biocatalytic exploration and structural analysis of a 4-ethylphenol oxidase from <em>Gulosibacter chungangensis</em>
Alvigini, L., Gran-Scheuch, A., Guo, Y., Trajkovic, M., Saifuddin, M., Fraaije, M. W., & Mattevi, A. (2021). Discovery, biocatalytic exploration and structural analysis of a 4-ethylphenol oxidase from Gulosibacter chungangensis. ChemBioChem, 22(22), 3225-3233. https://doi.org/10.1002/cbic.202100457
Crystal structure and subsequent ligand design of a nonriboside partial agonist bound to the adenosine A<sub>2A</sub> receptor
Amelia, T., van Veldhoven, J. P. D., Falsini, M., Liu, R., Heitman, L. H., van Westen, G. J. P., … IJzerman, A. P. (2021). Crystal structure and subsequent ligand design of a nonriboside partial agonist bound to the adenosine A2A receptor. Journal of Medicinal Chemistry, 64(7), 3827-3842. https://doi.org/10.1021/acs.jmedchem.0c01856
Interplay between the reorientational dynamics of the B<sub>3</sub>H<sub>8</sub><sup>–</sup> anion and the structure in KB<sub>3</sub>H<sub>8</sub>
Andersson, M. S., Grinderslev, J. B., Chen, X. M., Chen, X., Häussermann, U., Zhou, W., … Udovic, T. J. (2021). Interplay between the reorientational dynamics of the B3H8 anion and the structure in KB3H8. Journal of Physical Chemistry C, 125(7), 3716-3724. https://doi.org/10.1021/acs.jpcc.0c10186
Time-resolved study of thermal decomposition process of (NH<sub>4</sub>)<sub>2</sub>[PtCl<sub>6</sub>]: intermediates and Pt nucleation
Asanova, T. I., Fedorova, E. A., Asanov, I. P., Yusenko, K. V., Gerasimov, E. Y., La Fontaine, C., … Korenev, S. V. (2021). Time-resolved study of thermal decomposition process of (NH4)2[PtCl6]: intermediates and Pt nucleation. Vacuum, 194, 110590 (12 pp.). https://doi.org/10.1016/j.vacuum.2021.110590
Targeting intracellular WT1 in AML with a novel RMF-peptide-MHC-specific T-cell bispecific antibody
Augsberger, C., Hänel, G., Xu, W., Pulko, V., Hanisch, L. J., Augustin, A., … Subklewe, M. (2021). Targeting intracellular WT1 in AML with a novel RMF-peptide-MHC-specific T-cell bispecific antibody. Blood, 138(25), 2655 (15 pp.)-2669. https://doi.org/10.1182/blood.2020010477
Iron in hydroxyapatite: interstitial or substitution sites?
Avakyan, L., Paramonova, E., Bystrov, V., Coutinho, J., Gomes, S., & Renaudin, G. (2021). Iron in hydroxyapatite: interstitial or substitution sites? Nanomaterials, 11(11), 2978 (19 pp.). https://doi.org/10.3390/nano11112978
Enhancing glycan stability <em>via </em>site-selective fluorination: modulating substrate orientation by molecular design
Axer, A., Jumde, R. P., Adam, S., Faust, A., Schäfers, M., Fobker, M., … Gilmour, R. (2021). Enhancing glycan stability via site-selective fluorination: modulating substrate orientation by molecular design. Chemical Science, 12(4), 1286-1294. https://doi.org/10.1039/D0SC04297H
Proline/arginine dipeptide repeat polymers derail protein folding in amyotrophic lateral sclerosis
Babu, M., Favretto, F., de Opakua, A. I., Rankovic, M., Becker, S., & Zweckstetter, M. (2021). Proline/arginine dipeptide repeat polymers derail protein folding in amyotrophic lateral sclerosis. Nature Communications, 12(1), 3396 (7 pp.). https://doi.org/10.1038/s41467-021-23691-y
Shedding light on 19th century spectra by analyzing Lippmann photography
Baechler, G., Latty, A., Pacholska, M., Vetterli, M., & Scholefield, A. (2021). Shedding light on 19th century spectra by analyzing Lippmann photography. Proceedings of the National Academy of Sciences of the United States of America PNAS, 118(17), e2008819118 (7 pp.). https://doi.org/10.1073/pnas.2008819118
A mixed chirality α-helix in a stapled bicyclic and a linear antimicrobial peptide revealed by X-ray crystallography
Baeriswyl, S., Personne, H., Di Bonaventura, I., Köhler, T., Van Delden, C., Stocker, A., … Reymond, J. L. (2021). A mixed chirality α-helix in a stapled bicyclic and a linear antimicrobial peptide revealed by X-ray crystallography. RSC Chemical Biology, 2(6), 1608-1617. https://doi.org/10.1039/d1cb00124h
Ancestral reconstruction of mammalian FMO1 enables structural determination, revealing unique features that explain its catalytic properties
Bailleul, G., Nicoll, C. R., Mascotti, M. L., Mattevi, A., & Fraaije, M. W. (2021). Ancestral reconstruction of mammalian FMO1 enables structural determination, revealing unique features that explain its catalytic properties. Journal of Biological Chemistry, 296, 100221 (13 pp.). https://doi.org/10.1074/jbc.RA120.016297
 

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