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          <fullName>Structure, biochemical characterization and analysis of the&#xd;
pleomorphism of carboxylesterase Cest-2923 from&#xd;
Lactobacillus plantarum WCFS1</fullName>
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Lactobacillus plantarum WCFS1</attribute>
            <attribute name="journal" nameAc="MI:0885">FEBS J. (1742-464X)</attribute>
            <attribute name="publication year" nameAc="MI:0886">2013</attribute>
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Lactobacillus plantarum WCFS1</fullName>
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Lactobacillus plantarum WCFS1</attribute>
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      <interactor id="3">
        <names>
          <shortLabel>f9us10_lacpl</shortLabel>
          <alias type="locus name" typeAc="MI:0305">lp_2923</alias>
        </names>
        <xref>
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          <secondaryRef db="ensemblbacteria" id="lp_2923" version="TrEMBL_63" refType="gene"/>
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          <secondaryRef db="go" dbAc="MI:0448" id="GO:0042802" version="TrEMBL_63"/>
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          <secondaryRef db="refseq" dbAc="MI:0481" id="YP_004890513.1"/>
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            <shortLabel>protein</shortLabel>
            <fullName>protein</fullName>
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        </interactorType>
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          <names>
            <shortLabel>lacpl</shortLabel>
            <fullName>Lactobacillus plantarum (strain ATCC BAA-793 / NCIMB 8826 / WCFS1)</fullName>
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        </organism>
        <sequence>MQVEQRTLNTAAHPFQITAYWLDQISDFETAVDYPIMIICPGGGFTYHSGREEAPIATRMMAAGMHTVVLNYQLIVGDQSVYPWALQQLGATIDWITTQASAHHVDCQRIILAGFSAGGHVVATYNGVATQPELRTRYHLDHYQGQHAAIILGYPVIDLTAGFPTTSAARNQITTDARLWAAQRLVTPASKPAFVWQTATDESVPPINSLKYVQAMLQHQVATAYHLFGSGIHGLALANHVTQKPGKDKYLNDQAAIWPQLALRWLQEQGLLAGNY</sequence>
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          <attribute name="crc64">FA8717CA1728CB18</attribute>
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      </interactor>
    </interactorList>
    <interactionList>
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          <shortLabel>f9us10</shortLabel>
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        <participantList>
          <participant id="5">
            <names>
              <alias type="author assigned name" typeAc="MI:0345">Cest-2923</alias>
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              <names>
                <shortLabel>unspecified role</shortLabel>
                <fullName>unspecified role</fullName>
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                  <shortLabel>neutral component</shortLabel>
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                  <shortLabel>purified</shortLabel>
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                  <shortLabel>tag</shortLabel>
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                    <fullName>his tag</fullName>
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                    <alias type="go synonym" typeAc="MI:0303">6-His-tag</alias>
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                    <alias type="synonym" typeAc="MI:1041">Hexa-His-tag</alias>
                    <alias type="synonym" typeAc="MI:1041">Histidine-tag</alias>
                    <alias type="synonym" typeAc="MI:1041">6-His-tag</alias>
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                    <fullName>predetermined feature</fullName>
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                    <startStatus>
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                        <shortLabel>undetermined</shortLabel>
                        <fullName>undetermined sequence position</fullName>
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                    </endStatus>
                  </featureRange>
                </featureRangeList>
              </feature>
            </featureList>
            <hostOrganismList>
              <hostOrganism ncbiTaxId="83333">
                <names>
                  <shortLabel>ecoli</shortLabel>
                  <fullName>Escherichia coli (strain K12)</fullName>
                </names>
              </hostOrganism>
            </hostOrganismList>
            <stoichiometry value="2"/>
          </participant>
        </participantList>
        <interactionType>
          <names>
            <shortLabel>direct interaction</shortLabel>
            <fullName>direct interaction</fullName>
          </names>
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        </interactionType>
        <attributeList>
          <attribute name="figure legend" nameAc="MI:0599">t1 f2 f3 f4</attribute>
          <attribute name="comment" nameAc="MI:0612">Combining the results derived from these two distinct experimental approaches (crystallographic&#xd;
and analytical ultracentrifugation) we can deduce that Cest-2923 behaves in solution as an associative&#xd;
system well described by two equilibria, namely, a fast equilibrium between species with molecular masses consistent with monomers and dimers and another, much faster one between dimeric and&#xd;
tetrameric species, and secondly that the crystallization process is an active player in selecting a preexisting&#xd;
oligomeric form: dimers at neutral conditions, tetramers at acidic ones.</attribute>
        </attributeList>
      </interaction>
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          <shortLabel>f9us10-1</shortLabel>
        </names>
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        <participantList>
          <participant id="8">
            <names>
              <alias type="author assigned name" typeAc="MI:0345">Cest-2923</alias>
            </names>
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            <biologicalRole>
              <names>
                <shortLabel>unspecified role</shortLabel>
                <fullName>unspecified role</fullName>
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tetrameric species, and secondly that the crystallization process is an active player in selecting a preexisting&#xd;
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tetrameric species, and secondly that the crystallization process is an active player in selecting a preexisting&#xd;
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tetrameric species, and secondly that the crystallization process is an active player in selecting a preexisting&#xd;
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  </entry>
</entrySet>