Highlighted Proteins of Lyme Disease

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Like OspC and OspB, <scene name='Studio:G2SecL03/Ospa_3loopscartoon/3'>OspA</scene>'s expression is differentially regulated over the <i>B. burgdorferi</i> infection cycle. OspA is expressed while the bacteria resides in the midgut of the tick, downregulated while the tick feeds on its host, and then upregulated in the host's cerebrospinal fluid (CSF), which may induce an inflammatory response resulting in acute Lyme [http://en.wikipedia.org/wiki/Neuroborreliosis neuroborreliosis]. As mentioned above, OspA, together with OspB, make up the major proteins found on the surface of <i>B. burgdorferi</i>. Because OspA is relatively highly expressed and relatively invariable it has been used as a target in the development of a vaccine for [http://en.wikipedia.org/wiki/Lyme_disease Lyme disease].
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Like OspC and OspB, OspA's expression is differentially regulated over the <i>B. burgdorferi</i> infection cycle. OspA is expressed while the bacteria resides in the midgut of the tick, downregulated while the tick feeds on its host, and then upregulated in the host's cerebrospinal fluid (CSF), which may induce an inflammatory response resulting in acute Lyme [http://en.wikipedia.org/wiki/Neuroborreliosis neuroborreliosis]. As mentioned above, OspA, together with OspB, make up the major proteins found on the surface of <i>B. burgdorferi</i>. Because OspA is relatively highly expressed and relatively invariable it has been used as a target in the development of a vaccine for [http://en.wikipedia.org/wiki/Lyme_disease Lyme disease].
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<h3>Structure of OspA</h3>
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<h3>''Structure of OspA''</h3>
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<scene name='Studio:G2SecL03/Ospa_3loopscartoon/3' target="OspA-manip">Reset model</scene>,<br><scene name='Studio:G2SecL03/Ospa-3loops/4' target="OspA-manip">Three loops</scene> in C-terminus (close up)<scene name='Studio:G2SecL03/Ospa-loop1/1' target="OspA-manip">including Loop 1</scene> (residues 203-220)<scene name='Studio:G2SecL03/Ospa-loop2/1' target="OspA-manip">, Loop 2</scene> (residues 224-233)<scene name='Studio:G2SecL03/Ospa-loop3/1' target="OspA-manip">and Loop 3</scene> (residues 246-257)<scene name='Studio:G2SecL03/Ospa-3residues-nor/3' target="OspA-manip">Three residues</scene> in C-terminus (Ala208, Ala215 and Asn251 in <i>B. burgdorferi</i>; also hides R-groups). <scene name='Studio:G2SecL03/Ospa-3residues-r/2' target="OspA-manip">Display R-groups</scene> of Ala208, Ala215 and Asn251<scene name='Studio:G2SecL03/Ospa-ala208/1' target="OspA-manip">Alanine (Ala) 208</scene><scene name='Studio:G2SecL03/Ospa-ala215/1' target="OspA-manip">Alanine (Ala) 215</scene><scene name='Studio:G2SecL03/Ospa-asn251/1' target="OspA-manip">Asparagine (Asn) 251</scene><scene name='Studio:G2SecL03/Ospa-3loops3res/1' target="OspA-manip">Three loops and all three residues (with R-groups included)</scene>
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OspA is made up of 273 residues over 21 anti-parallel β-sheets and a single α-helix. It's folded conformation is divided into three main sections: a N-terminus "sandwich," a central region comprising of several β-sheets and a C-terminus "barrel" domain.<ref name="ding">PMID: 11183781</ref> The folded regions at its ends are connected by a single β-sheet layer in the middle, giving the protein the unique shape of a dumbell.<ref name="makabe">PMID: 16823038</ref>
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<scene name='Studio:G2SecL03/Ospa_3loopscartoon/3'>OspA</scene> is made up of 273 residues over 21 anti-parallel β-sheets and a single α-helix. It's folded conformation is divided into three main sections: a N-terminus "sandwich," a central region comprising of several β-sheets and a C-terminus "barrel" domain.<ref name="ding">PMID: 11183781</ref> The folded regions at its ends are connected by a single β-sheet layer in the middle, giving the protein the unique shape of a dumbell.<ref name="makabe">PMID: 16823038</ref>
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There are <scene name='Studio:G2SecL03/Ospa-3loops/4' target="OspA-manip">three loops</scene> at the C-terminus of OspA that are important in binding with the LA-2 Fab antibody, whose interactions provide great insight into vaccine research and effectiveness. These three loops are linearly arranged and form protruding ridge at the C-terminus of OspA. Within these loops, there are <scene name='Studio:G2SecL03/Ospa-3residues-nor/3' target="OspA-manip">three residues</scene> <scene name='Studio:G2SecL03/Ospa-3residues-r/2' target="OspA-manip">(show residue R-groups)</scene> where there are distinct variations between the different strains of <i>B. burgdorferi</i> and serve as potential targets for the creation of a broader vaccine.<ref name="ding">PMID: 11183781</ref> <scene name='Studio:G2SecL03/Ospa-3loops3res/1' target="OspA-manip">(display both the three loops and three residues together)</scene>
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There are <scene name='Studio:G2SecL03/Ospa-3loops/4'>three loops</scene> at the C-terminus of OspA that are important in binding with the LA-2 Fab antibody, whose interactions provide great insight into vaccine research and effectiveness. These three loops are linearly arranged and form protruding ridge at the C-terminus of OspA. Within these loops, there are <scene name='Studio:G2SecL03/Ospa-3residues-nor/3'>three residues</scene> <scene name='Studio:G2SecL03/Ospa-3residues-r/2'>(show residue R-groups)</scene> where there are distinct variations between the different strains of <i>B. burgdorferi</i> and serve as potential targets for the creation of a broader vaccine.<ref name="ding">PMID: 11183781</ref> <scene name='Studio:G2SecL03/Ospa-3loops3res/1">(display both the three loops and three residues together)</scene>
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<scene name='Studio:G2SecL03/Ospa-loop1/1' target="OspA-manip">Loop 1</scene>, (residues 203-220), is important in showing variation amongst the different strains of <i>B. burgdorferi</i> as well as being optimally conformed for binding without steric hindrance. <scene name='Studio:G2SecL03/Ospa-loop2/1' target="OspA-manip">Loop 2</scene> (residues 224-233) and <scene name='Studio:G2SecL03/Ospa-loop3/1' target="OspA-manip">Loop 3</scene> (residues 246-257) are more strongly conserved than Loop 1 but also help to show some variation amongst strains. The LA-2 Fab antibody readily recognizes OspA from <i>B. burgdorferi</i>, but does not recognize that from <i>B. afzelii</i> or <i>B. garinii</i>.
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<scene name='Studio:G2SecL03/Ospa-loop1/1'>Loop 1</scene>, (residues 203-220), is important in showing variation amongst the different strains of <i>B. burgdorferi</i> as well as being optimally conformed for binding without steric hindrance. <scene name='Studio:G2SecL03/Ospa-loop2/1'>Loop 2</scene> (residues 224-233) and <scene name='Studio:G2SecL03/Ospa-loop3/1'>Loop 3</scene> (residues 246-257) are more strongly conserved than Loop 1 but also help to show some variation amongst strains. The LA-2 Fab antibody readily recognizes OspA from <i>B. burgdorferi</i>, but does not recognize that from <i>B. afzelii</i> or <i>B. garinii</i>.
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Between <i>B. burgdorferi</i> and <i>B. afzelii</i> genetic sequences are generally invariant, but two residues change between the species: <scene name='Studio:G2SecL03/Ospa-ala208/1' target="OspA-manip">Alanine (Ala) 208</scene> in <i>B. burgdorferi</i> is a Glutamine (Gln) in <i>B. afzelii</i>, and <scene name='Studio:G2SecL03/Ospa-asn251/1' target="OspA-manip">Asparagine (Asn) 251</scene> in <i>B. burgdorferi</i> is an Alanine (Ala) in <i>B. afzelii</i>. <i>B. garinii</i> has more variation and in addition to the previous two differences, having at least one more difference, where <scene name='Studio:G2SecL03/Ospa-ala215/1' target="OspA-manip">Alanine (Ala) 215</scene> in <i>B. burgdorferi</i> is a Lysine (Lys), and sometimes also has a deletion at <i>B. burgdorferi</i>’s Alanine 208. LA-2 and OspA of <i>B. burgdorferi</i> form a tight interface when binding, and the longer Glutamine (Gln) sidechain found in <i>B. afzelii</i> and <i>B. garinii</i> is more difficult to accommodate, causing less binding. A chimera that was weakly recognized by LA-2 was made with parts of loop 1 from <i>B. burgdorferi</i>, and loops 2 and 3 from <i>B. garinii</i>.<ref name="ding">PMID: 11183781</ref> Recently, a different kind of chimera has been made which combined the proximal region of <i>B. burgdorferi</i> and distal region of <i>B. afzelii</i>, and was able to successfully protect mice from both species.<ref name="livey">PMID: 21217174</ref>
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Between <i>B. burgdorferi</i> and <i>B. afzelii</i> genetic sequences are generally invariant, but two residues change between the species: <scene name='Studio:G2SecL03/Ospa-ala208/1'>Alanine (Ala) 208</scene> in <i>B. burgdorferi</i> is a Glutamine (Gln) in <i>B. afzelii</i>, and <scene name='Studio:G2SecL03/Ospa-asn251/1'>Asparagine (Asn) 251</scene> in <i>B. burgdorferi</i> is an Alanine (Ala) in <i>B. afzelii</i>. <i>B. garinii</i> has more variation and in addition to the previous two differences, having at least one more difference, where <scene name='Studio:G2SecL03/Ospa-ala215/1'>Alanine (Ala) 215</scene> in <i>B. burgdorferi</i> is a Lysine (Lys), and sometimes also has a deletion at <i>B. burgdorferi</i>’s Alanine 208. LA-2 and OspA of <i>B. burgdorferi</i> form a tight interface when binding, and the longer Glutamine (Gln) sidechain found in <i>B. afzelii</i> and <i>B. garinii</i> is more difficult to accommodate, causing less binding. A chimera that was weakly recognized by LA-2 was made with parts of loop 1 from <i>B. burgdorferi</i>, and loops 2 and 3 from <i>B. garinii</i>.<ref name="ding">PMID: 11183781</ref> Recently, a different kind of chimera has been made which combined the proximal region of <i>B. burgdorferi</i> and distal region of <i>B. afzelii</i>, and was able to successfully protect mice from both species.<ref name="livey">PMID: 21217174</ref>
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Revision as of 23:43, 31 March 2014

PDB ID 1ggq

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Proteopedia Page Authors

Safa Abdelhakim, Frank J. Albergo, Irene Chen, Olivia Cheng, Rachel Cirineo, Jenny Kim Kim, Alexandros Konstantinidis, Cara Lin, Stephanie Maung, Christopher Morales, Andrea Mullen, Niamh B. O'Hara, Marvin H. O'Neal III, Philip J. Pipitone, Kimberly Slade, Christopher Smilios, Raymond Suhandynata, Khine Tun, Tanya Turkewitz, Ying Zhao, La Zhong, Jonathan Manit Wyrick.

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