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FEBS Letters
|
March 14, 1988
Histidine 64 is not required for high CO2 hydration activity of human carbonic anhydrase II
C Forsman, G Behravan, B H Jonsson, et al.
Biochimica Et Biophysica Acta
|
March 15, 1995
GroEL/ES-mediated refolding of human carbonic anhydrase II: role of N-terminal helices as recognition motifs for GroEL
M Persson, G Aronsson, N Bergenhem, et al.
Biochemistry
|
July 11, 1995
Mapping the folding intermediate of human carbonic anhydrase II. Probing substructure by chemical reactivity and spin and fluorescence labeling of engineered cysteine residues
M Svensson, P Jonasson, P O Freskgård, et al.
FEBS Letters
|
November 14, 1997
Preliminary NMR studies of Thermus thermophilus ribosomal protein S19 overproduced in Escherichia coli
N L Davydova, A V Rak, O I Gryaznova, et al.
FEBS Letters
|
January 13, 1992
Cis-trans isomerization is rate-determining in the reactivation of denatured human carbonic anhydrase II as evidenced by proline isomerase
C Fransson, P O Freskgård, H Herbertsson, et al.
FEBS Letters
|
July 7, 1997
A mutant form of the ribosomal protein L1 reveals conformational flexibility
J Unge, S Al-Karadaghi, A Liljas, et al.
FEBS Letters
|
August 7, 1995
Ribosomal protein L22 from Thermus thermophilus: sequencing, overexpression and crystallisation
N L Davydova, O I Gryaznova, O V Mashchenko, et al.
FEBS Letters
|
June 5, 1999
N-terminal domain, residues 1-91, of ribosomal protein TL5 from Thermus thermophilus binds specifically and strongly to the region of 5S rRNA containing loop E
G M Gongadze, V A Meshcheryakov, A A Serganov, et al.
The EMBO Journal
|
March 15, 1996
Crystal structure of the RNA binding ribosomal protein L1 from Thermus thermophilus
S Nikonov, N Nevskaya, I Eliseikina, et al.
Journal of Molecular Biology
|
March 5, 2011
SAXS models of TGFBIp reveal a trimeric structure and show that the overall shape is not affected by the Arg124His mutation
R V Basaiawmoit, C L P Oliveira, K Runager, et al.
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of 7
Search research articles
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Showing results (61-70 of 70) with videos related to
Sort By:
Page
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You have reached the last page of results.
This site can display upto 70 results.
FEBS Letters
|
March 14, 1988
Histidine 64 is not required for high CO2 hydration activity of human carbonic anhydrase II
C Forsman, G Behravan, B H Jonsson, et al.
Biochimica Et Biophysica Acta
|
March 15, 1995
GroEL/ES-mediated refolding of human carbonic anhydrase II: role of N-terminal helices as recognition motifs for GroEL
M Persson, G Aronsson, N Bergenhem, et al.
Biochemistry
|
July 11, 1995
Mapping the folding intermediate of human carbonic anhydrase II. Probing substructure by chemical reactivity and spin and fluorescence labeling of engineered cysteine residues
M Svensson, P Jonasson, P O Freskgård, et al.
FEBS Letters
|
November 14, 1997
Preliminary NMR studies of Thermus thermophilus ribosomal protein S19 overproduced in Escherichia coli
N L Davydova, A V Rak, O I Gryaznova, et al.
FEBS Letters
|
January 13, 1992
Cis-trans isomerization is rate-determining in the reactivation of denatured human carbonic anhydrase II as evidenced by proline isomerase
C Fransson, P O Freskgård, H Herbertsson, et al.
FEBS Letters
|
July 7, 1997
A mutant form of the ribosomal protein L1 reveals conformational flexibility
J Unge, S Al-Karadaghi, A Liljas, et al.
FEBS Letters
|
August 7, 1995
Ribosomal protein L22 from Thermus thermophilus: sequencing, overexpression and crystallisation
N L Davydova, O I Gryaznova, O V Mashchenko, et al.
FEBS Letters
|
June 5, 1999
N-terminal domain, residues 1-91, of ribosomal protein TL5 from Thermus thermophilus binds specifically and strongly to the region of 5S rRNA containing loop E
G M Gongadze, V A Meshcheryakov, A A Serganov, et al.
The EMBO Journal
|
March 15, 1996
Crystal structure of the RNA binding ribosomal protein L1 from Thermus thermophilus
S Nikonov, N Nevskaya, I Eliseikina, et al.
Journal of Molecular Biology
|
March 5, 2011
SAXS models of TGFBIp reveal a trimeric structure and show that the overall shape is not affected by the Arg124His mutation
R V Basaiawmoit, C L P Oliveira, K Runager, et al.
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of 7