Literature DB >> 8645735

A correlation between thermal stability and structural features of staphylokinase and selected mutants: a Fourier-transform infrared study.

U Dornberger1, D Fandrei, J Backmann, W Hübner, K Rahmelow, K H Gührs, M Hartmann, B Schlott, H Fritzsche.   

Abstract

Variants of recombinant staphylokinase (Sak) were investigated by Fourier-transform infrared spectroscopy: Sak (wild type), Sak-M26A, Sak-M26L, and Sak-G34S/R36G/R43H (Sak-B). Estimation of the secondary structure and hydrogen-deuterium exchange experiments revealed the existence of fast-exchanging and strongly solvent-exposed fractions of the helical structures in the two samples Sak and Sak-M26L. These two samples are also thermally less stable with unfolding transition temperatures of 43.7 degrees C (Sak) and 43.5 degrees C (Sak-M26L), respectively. On contrast, Sak-M26A and Sak-G34S/R36G/R43H have a slower hydrogen-deuterium exchange, have a smaller solvent-exposed portion of the helical part, and are more resistant against thermal unfolding; the transition temperatures are 51.7 degrees C and 59.3 degrees C, respectively. The secondary structure analysis was performed by two different approaches, by curve-fitting after band narrowing and by pattern recognition (factor analysis) based upon reference spectra of proteins with known crystal structure. Within the limits of the used methods, we are unable to detect significant differences in the secondary structure of the four variants of Sak. According to the results of the factor analysis, the portions of secondary structure elements were obtained to 16-20% alpha-helix, 28-30% beta-sheet, 23-27% turns, 28-30% irregular (random) and other structure. The sharp differences in the specific plasminogen-activating capacity (Sak, Sak-G34S/R36G/R43H and Sak-M26L are fully active, but Sak-M26A does not form a stable complex with plasminogen) are not reflected in the structural features revealed by the infrared spectra of this study.

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Year:  1996        PMID: 8645735     DOI: 10.1016/0167-4838(96)00018-0

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  3 in total

1.  NMR secondary structure of the plasminogen activator protein staphylokinase.

Authors:  O Ohlenschläger; R Ramachandran; J Flemming; K H Gührs; B Schlott; L R Brown
Journal:  J Biomol NMR       Date:  1997-04       Impact factor: 2.835

Review 2.  Effects of Physical and Chemical Factors on the Structure of Gluten, Gliadins and Glutenins as Studied with Spectroscopic Methods.

Authors:  Konrad Kłosok; Renata Welc; Emilia Fornal; Agnieszka Nawrocka
Journal:  Molecules       Date:  2021-01-19       Impact factor: 4.411

3.  Computer-aided engineering of staphylokinase toward enhanced affinity and selectivity for plasmin.

Authors:  Dmitri Nikitin; Jan Mican; Martin Toul; David Bednar; Michaela Peskova; Patricia Kittova; Sandra Thalerova; Jan Vitecek; Jiri Damborsky; Robert Mikulik; Sarel J Fleishman; Zbynek Prokop; Martin Marek
Journal:  Comput Struct Biotechnol J       Date:  2022-03-12       Impact factor: 7.271

  3 in total

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