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Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts

While conducting pilot studies into the usefulness of fusion to TELSAM polymers as a potential protein crystallization strategy, we observed novel properties in crystals of two TELSAM–target protein fusions, as follows. (i) A TELSAM–target protein fusion can crystallize more rapidly and with greater...

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Detalles Bibliográficos
Autores principales: Nawarathnage, Supeshala, Soleimani, Sara, Mathis, Moriah H., Bezzant, Braydan D., Ramírez, Diana T., Gajjar, Parag, Bunn, Derick R., Stewart, Cameron, Smith, Tobin, Pedroza Romo, Maria J., Brown, Seth, Doukov, Tzanko, Moody, James D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8889177/
https://www.ncbi.nlm.nih.gov/pubmed/35232248
http://dx.doi.org/10.1098/rsob.210271
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author Nawarathnage, Supeshala
Soleimani, Sara
Mathis, Moriah H.
Bezzant, Braydan D.
Ramírez, Diana T.
Gajjar, Parag
Bunn, Derick R.
Stewart, Cameron
Smith, Tobin
Pedroza Romo, Maria J.
Brown, Seth
Doukov, Tzanko
Moody, James D.
author_facet Nawarathnage, Supeshala
Soleimani, Sara
Mathis, Moriah H.
Bezzant, Braydan D.
Ramírez, Diana T.
Gajjar, Parag
Bunn, Derick R.
Stewart, Cameron
Smith, Tobin
Pedroza Romo, Maria J.
Brown, Seth
Doukov, Tzanko
Moody, James D.
author_sort Nawarathnage, Supeshala
collection PubMed
description While conducting pilot studies into the usefulness of fusion to TELSAM polymers as a potential protein crystallization strategy, we observed novel properties in crystals of two TELSAM–target protein fusions, as follows. (i) A TELSAM–target protein fusion can crystallize more rapidly and with greater propensity than the same target protein alone. (ii) TELSAM–target protein fusions can be crystallized at low protein concentrations. This unprecedented observation suggests a route to crystallize proteins that can only be produced in microgram amounts. (iii) The TELSAM polymers themselves need not directly contact one another in the crystal lattice in order to form well-diffracting crystals. This novel observation is important because it suggests that TELSAM may be able to crystallize target proteins too large to allow direct inter-polymer contacts. (iv) Flexible TELSAM–target protein linkers can allow target proteins to find productive binding modes against the TELSAM polymer. (v) TELSAM polymers can adjust their helical rise to allow fused target proteins to make productive crystal contacts. (vi). Fusion to TELSAM polymers can stabilize weak inter-target protein crystal contacts. We report features of these TELSAM–target protein crystal structures and outline future work needed to validate TELSAM as a crystallization chaperone and determine best practices for its use.
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spelling pubmed-88891772022-03-09 Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts Nawarathnage, Supeshala Soleimani, Sara Mathis, Moriah H. Bezzant, Braydan D. Ramírez, Diana T. Gajjar, Parag Bunn, Derick R. Stewart, Cameron Smith, Tobin Pedroza Romo, Maria J. Brown, Seth Doukov, Tzanko Moody, James D. Open Biol Methods and Techniques While conducting pilot studies into the usefulness of fusion to TELSAM polymers as a potential protein crystallization strategy, we observed novel properties in crystals of two TELSAM–target protein fusions, as follows. (i) A TELSAM–target protein fusion can crystallize more rapidly and with greater propensity than the same target protein alone. (ii) TELSAM–target protein fusions can be crystallized at low protein concentrations. This unprecedented observation suggests a route to crystallize proteins that can only be produced in microgram amounts. (iii) The TELSAM polymers themselves need not directly contact one another in the crystal lattice in order to form well-diffracting crystals. This novel observation is important because it suggests that TELSAM may be able to crystallize target proteins too large to allow direct inter-polymer contacts. (iv) Flexible TELSAM–target protein linkers can allow target proteins to find productive binding modes against the TELSAM polymer. (v) TELSAM polymers can adjust their helical rise to allow fused target proteins to make productive crystal contacts. (vi). Fusion to TELSAM polymers can stabilize weak inter-target protein crystal contacts. We report features of these TELSAM–target protein crystal structures and outline future work needed to validate TELSAM as a crystallization chaperone and determine best practices for its use. The Royal Society 2022-03-02 /pmc/articles/PMC8889177/ /pubmed/35232248 http://dx.doi.org/10.1098/rsob.210271 Text en © 2022 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Methods and Techniques
Nawarathnage, Supeshala
Soleimani, Sara
Mathis, Moriah H.
Bezzant, Braydan D.
Ramírez, Diana T.
Gajjar, Parag
Bunn, Derick R.
Stewart, Cameron
Smith, Tobin
Pedroza Romo, Maria J.
Brown, Seth
Doukov, Tzanko
Moody, James D.
Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title_full Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title_fullStr Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title_full_unstemmed Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title_short Crystals of TELSAM–target protein fusions that exhibit minimal crystal contacts and lack direct inter-TELSAM contacts
title_sort crystals of telsam–target protein fusions that exhibit minimal crystal contacts and lack direct inter-telsam contacts
topic Methods and Techniques
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8889177/
https://www.ncbi.nlm.nih.gov/pubmed/35232248
http://dx.doi.org/10.1098/rsob.210271
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