{"id":{"repo_id":"montana-tech","oai_identifier":"oai:scholarworks.umt.edu:etd-1530"},"canonical_url":"https://search.dev.ndltd.org/etd/montana-tech/oai:scholarworks.umt.edu:etd-1530","repository":{"repo_id":"montana-tech","name":"Montana Technology","base_url":"https://scholarworks.umt.edu/do/oai/"},"display":{"title":"Hemin Acquisition in Bartonella quintana","abstract":"<p><i>Bartonella quintana</i>, a Gram-negative bacterial pathogen, causes Trench fever, bacillary angiomatosis and endocarditis. Transmitted by the human body louse (<i>Pediculus humanus corporis</i>), the agent has a tropism for erythrocytes in humans. <i>In vitro</i> growth requires an extraordinary concentration of hemin, and genomic analyses indicate several potential uptake systems and iron-responsive regulators. Transcription of the <i>hbp</i> genes (hemin binding protein genes) is responsive to alterations in available hemin and an HbpA homolog in <i>B. henselae</i> reportedly functions as a hemin receptor in <i>E. coli hemA</i> strain EB53. <i>B. quintana hbpA</i> was not able to complement EB53, indicating that it is not a hemin receptor. A functional hemin receptor and coordinate uptake system is encoded by the hemin utilization (<i>hut</i>) locus. <i>B. quintana hutA</i> was able to complement a <i>hemA</i> mutation in <i>E. coli </i>EB53 and was shown to be TonB-dependent using an isogenic <i>E. coli hemA tonB</i> strain.</p> <p>Fur (ferric uptake regulator) has been described as a global iron-responsive regulator in &gamma-proteobacteria. If expression is forced, <i>B. quintana fur</i> is able to complement an <i>E. coli fur </i>mutant, but an endogenous promoter for the gene could not be located and native expression in <i>B. quintana</i> was not detected. Overexpression of the iron response regulator (Irr), a Fur family member, in <i>B. quintana</i> repressed <i>hut </i>locus transcription. Previous studies showed that Irr interacted with a consensus motif, the H-box, in the promoter of the <i>hbp</i> genes. A region with homology to the H-box consensus is present in the divergent promoter between <i>hutA</i> and <i>tonB</i> and in the promoter region of <i>hemS</i>.</p> <p>The fate of hemin in the bacterial cytoplasm is not well understood. HemS is a potential hemin storage/degradation enzyme. Initial characterization indicates that HemS is able to bind hemin in a 1:1 fashion with an estimated dissociation constant (Kd) of 5.9 + 1.7 &muM. Complementation analyses using <i>Corynebacterium ulcerans</i> CU712<i>hmuO</i>&delta strain have not been successful but future experiments plan to use an <i>E. coli chuS</i> strain. These studies have characterized the principal hemin uptake system of <i>B. quintana</i>, identified its transcriptional regulator, and initiated investigation of a potential heme oxygenase.</p>","abstract_html":"&lt;p&gt;&lt;i&gt;Bartonella quintana&lt;/i&gt;, a Gram-negative bacterial pathogen, causes Trench fever, bacillary angiomatosis and endocarditis. Transmitted by the human body louse (&lt;i&gt;Pediculus humanus corporis&lt;/i&gt;), the agent has a tropism for erythrocytes in humans. &lt;i&gt;In vitro&lt;/i&gt; growth requires an extraordinary concentration of hemin, and genomic analyses indicate several potential uptake systems and iron-responsive regulators. Transcription of the &lt;i&gt;hbp&lt;/i&gt; genes (hemin binding protein genes) is responsive to alterations in available hemin and an HbpA homolog in &lt;i&gt;B. henselae&lt;/i&gt; reportedly functions as a hemin receptor in &lt;i&gt;E. coli hemA&lt;/i&gt; strain EB53. &lt;i&gt;B. quintana hbpA&lt;/i&gt; was not able to complement EB53, indicating that it is not a hemin receptor. A functional hemin receptor and coordinate uptake system is encoded by the hemin utilization (&lt;i&gt;hut&lt;/i&gt;) locus. &lt;i&gt;B. quintana hutA&lt;/i&gt; was able to complement a &lt;i&gt;hemA&lt;/i&gt; mutation in &lt;i&gt;E. coli &lt;/i&gt;EB53 and was shown to be TonB-dependent using an isogenic &lt;i&gt;E. coli hemA tonB&lt;/i&gt; strain.&lt;/p&gt; &lt;p&gt;Fur (ferric uptake regulator) has been described as a global iron-responsive regulator in &amp;gamma-proteobacteria. If expression is forced, &lt;i&gt;B. quintana fur&lt;/i&gt; is able to complement an &lt;i&gt;E. coli fur &lt;/i&gt;mutant, but an endogenous promoter for the gene could not be located and native expression in &lt;i&gt;B. quintana&lt;/i&gt; was not detected. Overexpression of the iron response regulator (Irr), a Fur family member, in &lt;i&gt;B. quintana&lt;/i&gt; repressed &lt;i&gt;hut &lt;/i&gt;locus transcription. Previous studies showed that Irr interacted with a consensus motif, the H-box, in the promoter of the &lt;i&gt;hbp&lt;/i&gt; genes. A region with homology to the H-box consensus is present in the divergent promoter between &lt;i&gt;hutA&lt;/i&gt; and &lt;i&gt;tonB&lt;/i&gt; and in the promoter region of &lt;i&gt;hemS&lt;/i&gt;.&lt;/p&gt; &lt;p&gt;The fate of hemin in the bacterial cytoplasm is not well understood. HemS is a potential hemin storage/degradation enzyme. Initial characterization indicates that HemS is able to bind hemin in a 1:1 fashion with an estimated dissociation constant (Kd) of 5.9 + 1.7 &amp;muM. Complementation analyses using &lt;i&gt;Corynebacterium ulcerans&lt;/i&gt; CU712&lt;i&gt;hmuO&lt;/i&gt;&amp;delta strain have not been successful but future experiments plan to use an &lt;i&gt;E. coli chuS&lt;/i&gt; strain. These studies have characterized the principal hemin uptake system of &lt;i&gt;B. quintana&lt;/i&gt;, identified its transcriptional regulator, and initiated investigation of a potential heme oxygenase.&lt;/p&gt;","abstract_has_math":false,"creators":["Parrow, Nermi Lee"],"institution":"University of Montana","degree_name":"Doctor of Philosophy (PhD)","degree_level":null,"degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2010,"date_issued":"2010-01-01T08:00:00Z","date_published":"2010-01-01T08:00:00Z","updated_at":"2026-07-24T03:13:28Z","subjects":["Bartonella","hemin","iron","regulation","Trench fever"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://scholarworks.umt.edu/etd/511","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Parrow, Nermi Lee"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:publisher","label":"Institution","values":["University of Montana"]},{"key":"dc:type","label":"Dc Type","values":["Dissertation"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Doctor of Philosophy (PhD)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Bartonella","hemin","iron","regulation","Trench fever"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://scholarworks.umt.edu/etd/511"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p><i>Bartonella quintana</i>, a Gram-negative bacterial pathogen, causes Trench fever, bacillary angiomatosis and endocarditis. Transmitted by the human body louse (<i>Pediculus humanus corporis</i>), the agent has a tropism for erythrocytes in humans. <i>In vitro</i> growth requires an extraordinary concentration of hemin, and genomic analyses indicate several potential uptake systems and iron-responsive regulators. Transcription of the <i>hbp</i> genes (hemin binding protein genes) is responsive to alterations in available hemin and an HbpA homolog in <i>B. henselae</i> reportedly functions as a hemin receptor in <i>E. coli hemA</i> strain EB53. <i>B. quintana hbpA</i> was not able to complement EB53, indicating that it is not a hemin receptor. A functional hemin receptor and coordinate uptake system is encoded by the hemin utilization (<i>hut</i>) locus. <i>B. quintana hutA</i> was able to complement a <i>hemA</i> mutation in <i>E. coli </i>EB53 and was shown to be TonB-dependent using an isogenic <i>E. coli hemA tonB</i> strain.</p> <p>Fur (ferric uptake regulator) has been described as a global iron-responsive regulator in &gamma-proteobacteria. If expression is forced, <i>B. quintana fur</i> is able to complement an <i>E. coli fur </i>mutant, but an endogenous promoter for the gene could not be located and native expression in <i>B. quintana</i> was not detected. Overexpression of the iron response regulator (Irr), a Fur family member, in <i>B. quintana</i> repressed <i>hut </i>locus transcription. Previous studies showed that Irr interacted with a consensus motif, the H-box, in the promoter of the <i>hbp</i> genes. A region with homology to the H-box consensus is present in the divergent promoter between <i>hutA</i> and <i>tonB</i> and in the promoter region of <i>hemS</i>.</p> <p>The fate of hemin in the bacterial cytoplasm is not well understood. HemS is a potential hemin storage/degradation enzyme. Initial characterization indicates that HemS is able to bind hemin in a 1:1 fashion with an estimated dissociation constant (Kd) of 5.9 + 1.7 &muM. Complementation analyses using <i>Corynebacterium ulcerans</i> CU712<i>hmuO</i>&delta strain have not been successful but future experiments plan to use an <i>E. coli chuS</i> strain. These studies have characterized the principal hemin uptake system of <i>B. quintana</i>, identified its transcriptional regulator, and initiated investigation of a potential heme oxygenase.</p>"]},{"key":"dc:title","label":"Title","values":["Hemin Acquisition in Bartonella quintana"]}]}],"canonical_facts":{"dc:creator":["Parrow, Nermi Lee"],"dc:description.abstract":["<p><i>Bartonella quintana</i>, a Gram-negative bacterial pathogen, causes Trench fever, bacillary angiomatosis and endocarditis. Transmitted by the human body louse (<i>Pediculus humanus corporis</i>), the agent has a tropism for erythrocytes in humans. <i>In vitro</i> growth requires an extraordinary concentration of hemin, and genomic analyses indicate several potential uptake systems and iron-responsive regulators. Transcription of the <i>hbp</i> genes (hemin binding protein genes) is responsive to alterations in available hemin and an HbpA homolog in <i>B. henselae</i> reportedly functions as a hemin receptor in <i>E. coli hemA</i> strain EB53. <i>B. quintana hbpA</i> was not able to complement EB53, indicating that it is not a hemin receptor. A functional hemin receptor and coordinate uptake system is encoded by the hemin utilization (<i>hut</i>) locus. <i>B. quintana hutA</i> was able to complement a <i>hemA</i> mutation in <i>E. coli </i>EB53 and was shown to be TonB-dependent using an isogenic <i>E. coli hemA tonB</i> strain.</p> <p>Fur (ferric uptake regulator) has been described as a global iron-responsive regulator in &gamma-proteobacteria. If expression is forced, <i>B. quintana fur</i> is able to complement an <i>E. coli fur </i>mutant, but an endogenous promoter for the gene could not be located and native expression in <i>B. quintana</i> was not detected. Overexpression of the iron response regulator (Irr), a Fur family member, in <i>B. quintana</i> repressed <i>hut </i>locus transcription. Previous studies showed that Irr interacted with a consensus motif, the H-box, in the promoter of the <i>hbp</i> genes. A region with homology to the H-box consensus is present in the divergent promoter between <i>hutA</i> and <i>tonB</i> and in the promoter region of <i>hemS</i>.</p> <p>The fate of hemin in the bacterial cytoplasm is not well understood. HemS is a potential hemin storage/degradation enzyme. Initial characterization indicates that HemS is able to bind hemin in a 1:1 fashion with an estimated dissociation constant (Kd) of 5.9 + 1.7 &muM. Complementation analyses using <i>Corynebacterium ulcerans</i> CU712<i>hmuO</i>&delta strain have not been successful but future experiments plan to use an <i>E. coli chuS</i> strain. These studies have characterized the principal hemin uptake system of <i>B. quintana</i>, identified its transcriptional regulator, and initiated investigation of a potential heme oxygenase.</p>"],"dc:identifier":["https://scholarworks.umt.edu/etd/511"],"dc:publisher":["University of Montana"],"dc:subject":["Bartonella","hemin","iron","regulation","Trench fever"],"dc:title":["Hemin Acquisition in Bartonella quintana"],"dc:type":["Dissertation"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T03:13:28Z"}