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==Overview==
==Overview==
Lymphotactin, the sole identified member of the C class of chemokines, specifically attracts T lymphocytes and natural killer cells. This, 93-residue protein lacks 2 of the 4 conserved cysteine residues, characteristic of the other 3 classes of chemokines and possesses an, extended carboxyl terminus, which is required for chemotactic activity. We, have determined the three-dimensional solution structure of recombinant, human lymphotactin by NMR spectroscopy. Under the conditions used for the, structure determination, lymphotactin was predominantly monomeric;, however, pulsed field gradient NMR self-diffusion measurements and, analytical ultracentrifugation revealed evidence of dimer formation., Sequence-specific chemical shift assignments were determined through, analysis of two- and three-dimensional NMR spectra of (15)N- and, (13)C/(15)N-enriched protein samples. Input for the torsion angle dynamics, calculations used in determining the structure included 1258 unique, NOE-derived distance constraints and 60 dihedral angle constraints, obtained from chemical-shift-based searching of a protein conformational, database. The ensemble of 20 structures chosen to represent the structure, had backbone and heavy atom rms deviations of 0.46 +/- 0.11 and 1.02 +/-, 0.14 A, respectively. The results revealed that human lymphotactin adopts, the conserved chemokine fold, which is characterized by a three-stranded, antiparallel beta-sheet and a C-terminal alpha-helix. Two regions are, dynamically disordered as evidenced by (1)H and (13)C chemical shifts and, [(15)N]-(1)H NOEs: residues 1-9 of the amino terminus and residues 69-93, of the C-terminal extension. A functional role for the C-terminal, extension, which is unique to lymphotactin, remains to be elucidated.
Lymphotactin, the sole identified member of the C class of chemokines, specifically attracts T lymphocytes and natural killer cells. This 93-residue protein lacks 2 of the 4 conserved cysteine residues characteristic of the other 3 classes of chemokines and possesses an extended carboxyl terminus, which is required for chemotactic activity. We have determined the three-dimensional solution structure of recombinant human lymphotactin by NMR spectroscopy. Under the conditions used for the structure determination, lymphotactin was predominantly monomeric; however, pulsed field gradient NMR self-diffusion measurements and analytical ultracentrifugation revealed evidence of dimer formation. Sequence-specific chemical shift assignments were determined through analysis of two- and three-dimensional NMR spectra of (15)N- and (13)C/(15)N-enriched protein samples. Input for the torsion angle dynamics calculations used in determining the structure included 1258 unique NOE-derived distance constraints and 60 dihedral angle constraints obtained from chemical-shift-based searching of a protein conformational database. The ensemble of 20 structures chosen to represent the structure had backbone and heavy atom rms deviations of 0.46 +/- 0.11 and 1.02 +/- 0.14 A, respectively. The results revealed that human lymphotactin adopts the conserved chemokine fold, which is characterized by a three-stranded antiparallel beta-sheet and a C-terminal alpha-helix. Two regions are dynamically disordered as evidenced by (1)H and (13)C chemical shifts and [(15)N]-(1)H NOEs: residues 1-9 of the amino terminus and residues 69-93 of the C-terminal extension. A functional role for the C-terminal extension, which is unique to lymphotactin, remains to be elucidated.


==About this Structure==
==About this Structure==
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[[Category: Homo sapiens]]
[[Category: Homo sapiens]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Kuloglu, E.S.]]
[[Category: Kuloglu, E S.]]
[[Category: Markley, J.L.]]
[[Category: Markley, J L.]]
[[Category: McCaslin, D.R.]]
[[Category: McCaslin, D R.]]
[[Category: Pauza, C.D.]]
[[Category: Pauza, C D.]]
[[Category: Volkman, B.F.]]
[[Category: Volkman, B F.]]
[[Category: chemokine]]
[[Category: chemokine]]


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