There is a growing body of evidence demonstrating that information carried by carbohydrate groups of lymphocyte glycoproteins and glycolipids play important roles cellular communication by these cells. Indeed, there are now well documented examples of carbohydrate binding proteins (CBPs) that are either expressed on or bind to lymphocytes and mediate defined functions including lymphocyte trafficking, apoptosis, and cytokine production. There is also clear but fragmentary evidence that glycosylation is dynamically regulated during lymphocyte differentiation and activation. Many of the CBPs involved in lymphocyte biology recognize either sialic containing carbohydrates or their 'asialo' core structures. This project is focused on the regulated expression of this large class of carbohydrates through the action of sialyltransferases, sialidases and other glycosyltransferases. Elucidation of the regulation of sialoside expression will lead to a deeper understanding of how CBPs of known function are modulated by their ligands, and is expected to help elucidate the functions of many other CBPs whose functions are not yet known.The major objectives of the project are to directed to 1) define the temporal changes in sialic acid containing carbohydrates of B cells, CD4+ T cells, and CD8+ T cells following their activation and differentiation, 2) establish which enzymes regulate the glycosylation changes, and at what level that regulation is exerted, and 3) investigate the role of the carbohydrate ligand of CD22 as a modulator of B cell signaling. The primary focus will be to study glycosylation changes following activation of lymphocytes, and how these changes relate to B cell and T cell function.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI050143-03
Application #
6870180
Study Section
Physiological Chemistry Study Section (PC)
Program Officer
Mallia, Conrad M
Project Start
2003-04-01
Project End
2008-03-31
Budget Start
2005-04-01
Budget End
2006-03-31
Support Year
3
Fiscal Year
2005
Total Cost
$469,250
Indirect Cost
Name
Scripps Research Institute
Department
Type
DUNS #
781613492
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Sun, Yuting; Hong, Senlian; Xie, Ran et al. (2018) Mechanistic Investigation and Multiplexing of Liposome-Assisted Metabolic Glycan Labeling. J Am Chem Soc 140:3592-3602
Edgar, Landon J; Kawasaki, Norihito; Nycholat, Corwin M et al. (2018) Targeted Delivery of Antigen to Activated CD169+ Macrophages Induces Bias for Expansion of CD8+ T Cells. Cell Chem Biol :
Nemanichvili, Nikoloz; Tomris, Ilhan; Turner, Hannah L et al. (2018) Fluorescent Trimeric Hemagglutinins Reveal Multivalent Receptor Binding Properties. J Mol Biol :
Spiller, Fernando; Nycholat, Corwin M; Kikuchi, Chika et al. (2018) Murine Red Blood Cells Lack Ligands for B Cell Siglecs, Allowing Strong Activation by Erythrocyte Surface Antigens. J Immunol 200:949-956
Bednar, Kyle J; Shanina, Elena; Ballet, Romain et al. (2017) Human CD22 Inhibits Murine B Cell Receptor Activation in a Human CD22 Transgenic Mouse Model. J Immunol 199:3116-3128
Peng, Wenjie; Paulson, James C (2017) CD22 Ligands on a Natural N-Glycan Scaffold Efficiently Deliver Toxins to B-Lymphoma Cells. J Am Chem Soc 139:12450-12458
Lopez Aguilar, Aime; Briard, Jennie Grace; Yang, Linette et al. (2017) Tools for Studying Glycans: Recent Advances in Chemoenzymatic Glycan Labeling. ACS Chem Biol 12:611-621
Orgel, Kelly A; Duan, Shiteng; Wright, Benjamin L et al. (2017) Exploiting CD22 on antigen-specific B cells to prevent allergy to the major peanut allergen Ara h 2. J Allergy Clin Immunol 139:366-369.e2
Pang, Lijuan; Macauley, Matthew S; Arlian, Britni M et al. (2017) Encapsulating an Immunosuppressant Enhances Tolerance Induction by Siglec-Engaging Tolerogenic Liposomes. Chembiochem 18:1226-1233
Natoni, Alessandro; Macauley, Matthew S; O'Dwyer, Michael E (2016) Targeting Selectins and Their Ligands in Cancer. Front Oncol 6:93

Showing the most recent 10 out of 67 publications