Literature DB >> 27359086

Functional Analysis of a Bacterial Antifreeze Protein Indicates a Cooperative Effect between Its Two Ice-Binding Domains.

Chen Wang1, Erin E Oliver1, Brent C Christner1, Bing-Hao Luo1.   

Abstract

Antifreeze proteins make up a class of ice-binding proteins (IBPs) that are possessed and expressed by certain cold-adapted organisms to enhance their freezing tolerance. Here we report the biophysical and functional characterization of an IBP discovered in a bacterium recovered from a deep glacial ice core drilled at Vostok Station, Antarctica (IBPv). Our study showed that the recombinant protein rIBPv exhibited a thermal hysteresis of 2 °C at concentrations of >50 μM, effectively inhibited ice recrystallization, and enhanced bacterial viability during freeze-thaw cycling. Circular dichroism scans indicated that rIBPv mainly consists of β strands, and its denaturing temperature was 53.5 °C. Multiple-sequence alignment of homologous IBPs predicted that IBPv contains two ice-binding domains, a feature unique among known IBPs. To examine functional differences between the IBPv domains, each domain was cloned, expressed, and purified. The second domain (domain B) expressed greater ice binding activity. Data from thermal hysteresis and gel filtration assays supported the idea that the two domains cooperate to achieve a higher ice binding effect by forming heterodimers. However, physical linkage of the domains was not required for this effect.

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Year:  2016        PMID: 27359086     DOI: 10.1021/acs.biochem.6b00323

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  4 in total

Review 1.  Marine Antifreeze Proteins: Structure, Function, and Application to Cryopreservation as a Potential Cryoprotectant.

Authors:  Hak Jun Kim; Jun Hyuck Lee; Young Baek Hur; Chang Woo Lee; Sun-Ha Park; Bon-Won Koo
Journal:  Mar Drugs       Date:  2017-01-27       Impact factor: 5.118

2.  Adsorption of ice-binding proteins onto whole ice crystal surfaces does not necessarily confer a high thermal hysteresis activity.

Authors:  Tatsuya Arai; Akari Yamauchi; Yue Yang; Shiv Mohan Singh; Yuji C Sasaki; Sakae Tsuda
Journal:  Sci Rep       Date:  2022-09-14       Impact factor: 4.996

3.  Structural basis of antifreeze activity of a bacterial multi-domain antifreeze protein.

Authors:  Chen Wang; Svetlana Pakhomova; Marcia E Newcomer; Brent C Christner; Bing-Hao Luo
Journal:  PLoS One       Date:  2017-11-06       Impact factor: 3.240

4.  Characterization of microbial antifreeze protein with intermediate activity suggests that a bound-water network is essential for hyperactivity.

Authors:  N M-Mofiz Uddin Khan; Tatsuya Arai; Sakae Tsuda; Hidemasa Kondo
Journal:  Sci Rep       Date:  2021-03-16       Impact factor: 4.379

  4 in total

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