In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>

<p>Abstract</p> <p>Background</p> <p>Invertebrate biominerals are characterized by their extraordinary functionality and physical properties, such as strength, stiffness and toughness that by far exceed those of the pure mineral component of such composites. This is att...

Full description

Bibliographic Details
Main Authors: Mann Karlheinz, Edsinger-Gonzales Eric, Mann Matthias
Format: Article
Language:English
Published: BMC 2012-06-01
Series:Proteome Science
Online Access:http://www.proteomesci.com/content/10/1/28
_version_ 1811277846615687168
author Mann Karlheinz
Edsinger-Gonzales Eric
Mann Matthias
author_facet Mann Karlheinz
Edsinger-Gonzales Eric
Mann Matthias
author_sort Mann Karlheinz
collection DOAJ
description <p>Abstract</p> <p>Background</p> <p>Invertebrate biominerals are characterized by their extraordinary functionality and physical properties, such as strength, stiffness and toughness that by far exceed those of the pure mineral component of such composites. This is attributed to the organic matrix, secreted by specialized cells, which pervades and envelops the mineral crystals. Despite the obvious importance of the protein fraction of the organic matrix, only few in-depth proteomic studies have been performed due to the lack of comprehensive protein sequence databases. The recent public release of the gastropod <it>Lottia gigantea</it> genome sequence and the associated protein sequence database provides for the first time the opportunity to do a state-of-the-art proteomic in-depth analysis of the organic matrix of a mollusc shell.</p> <p>Results</p> <p>Using three different sodium hypochlorite washing protocols before shell demineralization, a total of 569 proteins were identified in <it>Lottia gigantea</it> shell matrix. Of these, 311 were assembled in a consensus proteome comprising identifications contained in all proteomes irrespective of shell cleaning procedure. Some of these proteins were similar in amino acid sequence, amino acid composition, or domain structure to proteins identified previously in different bivalve or gastropod shells, such as BMSP, dermatopontin, nacrein, perlustrin, perlucin, or Pif. In addition there were dozens of previously uncharacterized proteins, many containing repeated short linear motifs or homorepeats. Such proteins may play a role in shell matrix construction or control of mineralization processes.</p> <p>Conclusions</p> <p>The organic matrix of <it>Lottia gigantea</it> shells is a complex mixture of proteins comprising possible homologs of some previously characterized mollusc shell proteins, but also many novel proteins with a possible function in biomineralization as framework building blocks or as regulatory components. We hope that this data set, the most comprehensive available at present, will provide a platform for the further exploration of biomineralization processes in molluscs.</p>
first_indexed 2024-04-13T00:25:10Z
format Article
id doaj.art-f7dc767fccac45468454b64264278260
institution Directory Open Access Journal
issn 1477-5956
language English
last_indexed 2024-04-13T00:25:10Z
publishDate 2012-06-01
publisher BMC
record_format Article
series Proteome Science
spelling doaj.art-f7dc767fccac45468454b642642782602022-12-22T03:10:39ZengBMCProteome Science1477-59562012-06-011012810.1186/1477-5956-10-28In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>Mann KarlheinzEdsinger-Gonzales EricMann Matthias<p>Abstract</p> <p>Background</p> <p>Invertebrate biominerals are characterized by their extraordinary functionality and physical properties, such as strength, stiffness and toughness that by far exceed those of the pure mineral component of such composites. This is attributed to the organic matrix, secreted by specialized cells, which pervades and envelops the mineral crystals. Despite the obvious importance of the protein fraction of the organic matrix, only few in-depth proteomic studies have been performed due to the lack of comprehensive protein sequence databases. The recent public release of the gastropod <it>Lottia gigantea</it> genome sequence and the associated protein sequence database provides for the first time the opportunity to do a state-of-the-art proteomic in-depth analysis of the organic matrix of a mollusc shell.</p> <p>Results</p> <p>Using three different sodium hypochlorite washing protocols before shell demineralization, a total of 569 proteins were identified in <it>Lottia gigantea</it> shell matrix. Of these, 311 were assembled in a consensus proteome comprising identifications contained in all proteomes irrespective of shell cleaning procedure. Some of these proteins were similar in amino acid sequence, amino acid composition, or domain structure to proteins identified previously in different bivalve or gastropod shells, such as BMSP, dermatopontin, nacrein, perlustrin, perlucin, or Pif. In addition there were dozens of previously uncharacterized proteins, many containing repeated short linear motifs or homorepeats. Such proteins may play a role in shell matrix construction or control of mineralization processes.</p> <p>Conclusions</p> <p>The organic matrix of <it>Lottia gigantea</it> shells is a complex mixture of proteins comprising possible homologs of some previously characterized mollusc shell proteins, but also many novel proteins with a possible function in biomineralization as framework building blocks or as regulatory components. We hope that this data set, the most comprehensive available at present, will provide a platform for the further exploration of biomineralization processes in molluscs.</p>http://www.proteomesci.com/content/10/1/28
spellingShingle Mann Karlheinz
Edsinger-Gonzales Eric
Mann Matthias
In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
Proteome Science
title In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
title_full In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
title_fullStr In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
title_full_unstemmed In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
title_short In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet <it>Lottia gigantea</it>
title_sort in depth proteomic analysis of a mollusc shell acid soluble and acid insoluble matrix of the limpet it lottia gigantea it
url http://www.proteomesci.com/content/10/1/28
work_keys_str_mv AT mannkarlheinz indepthproteomicanalysisofamolluscshellacidsolubleandacidinsolublematrixofthelimpetitlottiagiganteait
AT edsingergonzaleseric indepthproteomicanalysisofamolluscshellacidsolubleandacidinsolublematrixofthelimpetitlottiagiganteait
AT mannmatthias indepthproteomicanalysisofamolluscshellacidsolubleandacidinsolublematrixofthelimpetitlottiagiganteait