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Posted by edward on October 07, 2013 - 20:57:
Author: bugman
Date: Mon Oct  7 20:57:04 2013
New Revision: 21010

URL: http://svn.gna.org/viewcvs/relax?rev=21010&view=rev
Log:
Removed some strange characters from the Tollinger01 Bibtex abstract.


Modified:
    branches/relax_disp/docs/latex/bibliography.bib

Modified: branches/relax_disp/docs/latex/bibliography.bib
URL: 
http://svn.gna.org/viewcvs/relax/branches/relax_disp/docs/latex/bibliography.bib?rev=21010&r1=21009&r2=21010&view=diff
==============================================================================
--- branches/relax_disp/docs/latex/bibliography.bib (original)
+++ branches/relax_disp/docs/latex/bibliography.bib Mon Oct  7 20:57:04 2013
@@ -6223,13 +6223,13 @@
                    study microsecond to second time scale exchange 
processes. The drkN
                    SH3 domain exists in equilibrium between folded (Fexch) 
and unfolded
                    (Uexch) states under nondenaturing conditions in a ratio 
of 2:1 at
-                   20 °C, with an average exchange rate constant, kex, of 
2.2 s-1 (slow
+                   20 C, with an average exchange rate constant, kex, of 2.2 
s-1 (slow
                    exchange on the NMR chemical shift time scale). 
Consequently a discrete
                    set of resonances is observed for each state in NMR 
spectra. Within
                    the Uexch ensemble there is a contiguous stretch of 
residues undergoing
                    conformational exchange on a μs/ms time scale, likely 
due to local,
                    non-native hydrophobic collapse. For these residues both 
the Fexch
-                   ↔ Uexch conformational exchange process and the μs/ms 
exchange
+                   - Uexch conformational exchange process and the μs/ms 
exchange
                    event within the Uexch state contribute to the 15N line 
width and
                    can be analyzed using CPMG-based 15N relaxation 
dispersion measurements.
                    The contribution of both processes to the apparent 
relaxation rate




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