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2020 ◽  
Author(s):  
Francesco Scattarella ◽  
Dritan Siliqi ◽  
Liberato De Caro ◽  
Massimo Ladisa ◽  
Alberta Terzi ◽  
...  
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2019 ◽  
Vol 52 (2) ◽  
pp. 378-386
Author(s):  
Amit Sharma ◽  
Peter Berntsen ◽  
Rajiv Harimoorthy ◽  
Roberto Appio ◽  
Jennie Sjöhamn ◽  
...  

The X-ray crystallography station I911-2 at MAXLab II (Lund, Sweden) has been adapted to enable difference small- and wide-angle X-ray scattering (SAXS/WAXS) data to be recorded. Modifications to the beamline included a customized flow cell, a motorized flow cell holder, a helium cone, a beam stop, a sample stage and a sample delivery system. This setup incorporated external devices such as infrared lasers, LEDs and reaction mixers to induce conformational changes in macromolecules. This platform was evaluated through proof-of-principle experiments capturing light-induced conformational changes in phytochromes. A difference WAXS signature of conformational changes in a plant aquaporin was also demonstrated using caged calcium.


2019 ◽  
Author(s):  
V. V. Manju ◽  
S. Divakara ◽  
K. Byrappa ◽  
R. Somashekar

2012 ◽  
Vol 16 (2) ◽  
pp. 126-129 ◽  
Author(s):  
P Parameswara ◽  
T Demappa ◽  
Mahadevaiah ◽  
Y Prakash ◽  
H Somashekarappa ◽  
...  
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2009 ◽  
Vol 42 (2) ◽  
pp. 259-264 ◽  
Author(s):  
Xinguo Hong ◽  
Quan Hao

Solving the phase problem remains central to crystallographic structure determination. A six-dimensional search method of molecular replacement (FSEARCH) can be used to locate a low-resolution molecular envelope determined from small-angle X-ray scattering (SAXS) within the crystallographic unit cell. This method has now been applied using the higher-resolution envelope provided by combining SAXS and WAXS (wide-angle X-ray scattering) data. The method was tested on horse hemoglobin, using the most probable model selected from a set of a dozen bead models constructed from SAXS/WAXS data using the programGASBORat 5 Å resolution (qmax= 1.25 Å−1) to phase a set of single-crystal diffraction data. It was found that inclusion of WAXS data is essential for correctly locating the molecular envelope in the crystal unit cell, as well as for locating heavy-atom sites. An anomalous difference map was calculated using phases out to 8 Å resolution from the correctly positioned envelope; four distinct peaks at the 3.2σ level were identified, which agree well with the four iron sites of the known structure (Protein Data Bank code 1ns9). In contrast, no peaks could be found close to the iron sites if the molecular envelope was constructed using the data from SAXS alone (qmax= 0.25 Å−1). The initial phases can be used as a starting point for a variety of phase-extension techniques, successful application of which will result in complete phasing of a crystallographic data set and determination of the internal structure of a macromolecule to atomic resolution. It is anticipated that the combination ofFSEARCHand WAXS techniques will facilitate the initial structure determination of proteins and provide a good foundation for further structure refinement.


2008 ◽  
Vol 11 (4) ◽  
pp. 781-790 ◽  
Author(s):  
V.K. Smitha ◽  
O.M. Samir ◽  
R. Gopalkrishne Urs ◽  
S.S. Mahesh ◽  
N.G. Malleshi ◽  
...  
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