Literature DB >> 17315945

Mineral proximity influences mechanical response of proteins in biological mineral-protein hybrid systems.

Pijush Ghosh1, Dinesh R Katti, Kalpana S Katti.   

Abstract

The organic phase of nacre, which is composed primarily of proteins, has an extremely high elastic modulus as compared to that of bulk proteins, and also undergoes large deformation before failure. One reason for this unusually high modulus could be the mineral-organic interactions. In this work, we elucidate the specific role of mineral proximity on the structural response of proteins in biological structural composites such as nacre through molecular modeling. The "glycine-serine" domain of a nacre protein Lustrin A has been used as a model system. It is found that the amount of work needed to unfold is significantly higher when the GS domain is pulled in the proximity of aragonite. These results indicate that the proximity of aragonite has a significant effect on the unfolding mechanisms of proteins when pulled. These results will provide very useful information in designing synthetic biocomposites, as well as further our understanding of mechanical response in structural composites in nature.

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Year:  2007        PMID: 17315945     DOI: 10.1021/bm060942h

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  6 in total

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4.  Ubiquitylation functions in the calcium carbonate biomineralization in the extracellular matrix.

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5.  Differences in Interactions Within Viral Replication Complexes of SARS-CoV-2 (COVID-19) and SARS-CoV Coronaviruses Control RNA Replication Ability.

Authors:  H M Nasrullah Faisal; Kalpana S Katti; Dinesh R Katti
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Review 6.  Biomechanics and mechanobiology of the bone matrix.

Authors:  Chunyang Ma; Tianming Du; Xufeng Niu; Yubo Fan
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  6 in total

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