Differences in Sulfotyrosine Binding amongst CXCR1 and CXCR2 Chemokine Ligands

被引:19
|
作者
Moussouras, Natasha A. [1 ]
Getschman, Anthony E. [2 ]
Lackner, Emily R. [3 ]
Veldkamp, Christopher T. [3 ]
Dwinell, Michael B. [1 ]
Volkman, Brian F. [2 ]
机构
[1] Med Coll Wisconsin, Dept Microbiol & Immunol, Milwaukee, WI 53226 USA
[2] Med Coll Wisconsin, Dept Biochem, Milwaukee, WI 53226 USA
[3] Univ Wisconsin Whitewater, Dept Chem, Whitewater, WI 53190 USA
来源
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES | 2017年 / 18卷 / 09期
基金
美国国家卫生研究院;
关键词
CXCL5; CXCL8; CXCR1; CXCR2; sulfotyrosine; post-translational modification; chemokines; NMR; GRANULOCYTE CHEMOTACTIC PROTEIN-2; NEUTROPHIL-ACTIVATING PEPTIDE-78; SOLUTION NMR CHARACTERIZATION; TYROSINE SULFATION SITES; EPITHELIAL-CELLS; DIMER BINDING; CC-CHEMOKINE; HOST-DEFENSE; HOT-SPOTS; RECEPTOR;
D O I
10.3390/ijms18091894
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Tyrosine sulfation, a post-translational modification found on many chemokine receptors, typically increases receptor affinity for the chemokine ligand. A previous bioinformatics analysis suggested that a sulfotyrosine (sY)-binding site on the surface of the chemokine CXCL12 may be conserved throughout the chemokine family. However, the extent to which receptor tyrosine sulfation contributes to chemokine binding has been examined in only a few instances. Computational solvent mapping correctly identified the conserved sulfotyrosine-binding sites on CXCL12 and CCL21 detected by nuclear magnetic resonance (NMR) spectroscopy, demonstrating its utility for hot spot analysis in the chemokine family. In this study, we analyzed five chemokines that bind to CXCR2, a subset of which also bind to CXCR1, to identify hot spots that could participate in receptor binding. A cleft containing the predicted sulfotyrosine-binding pocket was identified as a principal hot spot for ligand binding on the structures of CXCL1, CXCL2, CXCL7, and CXCL8, but not CXCL5. Sulfotyrosine titrations monitored via NMR spectroscopy showed specific binding to CXCL8, but not to CXCL5, which is consistent with the predictions from the computational solvent mapping. The lack of CXCL5-sulfotyrosine interaction and the presence of CXCL8-sulfotyrosine binding suggests a role for receptor post-translational modifications regulating ligand selectivity.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Small molecule antagonist of CXCR2 and CXCR1 inhibits tumor growth, angiogenesis, and metastasis in pancreatic cancer
    Prajapati, Dipakkumar R.
    Molczyk, Caitlin
    Purohit, Abhilasha
    Saxena, Sugandha
    Sturgeon, Reegan
    Dave, Bhavana J.
    Kumar, Sushil
    Batra, Surinder K.
    Singh, Rakesh K.
    CANCER LETTERS, 2023, 563
  • [22] Intracellular trafficking of human CXCR1 and CXCR2: regulation by receptor domains and actin-related kinases
    Matityahu, E
    Feniger-Barish, R
    Meshel, T
    Zaslaver, A
    Ben-Baruch, A
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2002, 32 (12) : 3525 - 3535
  • [23] Interleukin-8 Receptors CXCR1 and CXCR2 Are Not Expressed by Endothelial Colony-forming Cells
    Adeline Blandinières
    Xuechong Hong
    Aurélien Philippe
    Ivan Bièche
    Sophie Vacher
    Elisa Rossi
    Grégoire Detriche
    Nicolas Gendron
    Pascale Gaussem
    Coralie L. Guerin
    Juan M. Melero-Martin
    David M. Smadja
    Stem Cell Reviews and Reports, 2021, 17 : 628 - 638
  • [24] The chemokine interleukin-8 acutely reduces Ca2+ currents in identified cholinergic septal neurons expressing CXCR1 and CXCR2 receptor mRNAs
    Puma, C
    Danik, M
    Quirion, R
    Ramon, F
    Williams, S
    JOURNAL OF NEUROCHEMISTRY, 2001, 78 (05) : 960 - 971
  • [25] Differential Effects of Posttranslational Modifications of CXCL8/Interleukin-8 on CXCR1 and CXCR2 Internalization and Signaling Properties
    Vacchini, Alessandro
    Mortier, Anneleen
    Proost, Paul
    Locati, Massimo
    Metzemaekers, Mieke
    Borroni, Elena Monica
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (12)
  • [26] Control of senescence by CXCR2 and its ligands
    Acosta, Juan C.
    O'Loghlen, Ana
    Banito, Ana
    Raguz, Selina
    Gil, Jesus
    CELL CYCLE, 2008, 7 (19) : 2956 - 2959
  • [27] Structural insights into the activation of chemokine receptor CXCR2
    Liu, Kaiwen
    Shen, Ling
    Wu, Meng
    Liu, Zhi-Jie
    Hua, Tian
    FEBS JOURNAL, 2022, 289 (02) : 386 - 393
  • [28] Expression of the chemokine receptor CXCR1 in human glomerular diseases
    Segerer, S
    Henger, A
    Schmid, H
    Kretzler, M
    Draganovici, D
    Brandt, U
    Noessner, E
    Nelson, PJ
    Kerjaschki, D
    Schlöndorff, D
    Regele, H
    KIDNEY INTERNATIONAL, 2006, 69 (10) : 1765 - 1773
  • [29] Intracellular cross-talk between the GPCR CXCR1 and CXCR2: Role of carboxyl terminus phosphorylation sites
    Attala, Hila
    Cohen-Hillel, Efrat
    Meshel, Tsipi
    Wang, Ji Ming
    Gong, Wanghua
    Ben-Baruch, Adit
    EXPERIMENTAL CELL RESEARCH, 2008, 314 (02) : 352 - 365
  • [30] The role of CXCR2 chemokine receptors in the oral squamous cell carcinoma
    Romanini, Juliana
    Mielcke, Tania R.
    Leal, Paulo C.
    Figueiredo, Claudia P.
    Calixto, Joao B.
    Morrone, Fernanda B.
    Batista, Eraldo L., Jr.
    Campos, Maria M.
    INVESTIGATIONAL NEW DRUGS, 2012, 30 (04) : 1371 - 1378