Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins

<p>Immunoglobulin G (IgG) is central in mediating host defense due to its ability to target and eliminate invading pathogens. The fragment antigen binding (Fab) regions are responsible for antigen recognition; however the effector responses are encoded on the Fc region of IgG. IgG Fc displays...

Full description

Bibliographic Details
Main Author: Ahmed, Alysia Ashley
Format: Others
Published: 2015
Online Access:https://thesis.library.caltech.edu/8914/1/Thesis_Alysia_Ahmed_052915.pdf
Ahmed, Alysia Ashley (2015) Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9GT5K33. https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250 <https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250>
id ndltd-CALTECH-oai-thesis.library.caltech.edu-8914
record_format oai_dc
spelling ndltd-CALTECH-oai-thesis.library.caltech.edu-89142019-10-05T03:03:30Z Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins Ahmed, Alysia Ashley <p>Immunoglobulin G (IgG) is central in mediating host defense due to its ability to target and eliminate invading pathogens. The fragment antigen binding (Fab) regions are responsible for antigen recognition; however the effector responses are encoded on the Fc region of IgG. IgG Fc displays considerable glycan heterogeneity, accounting for its complex effector functions of inflammation, modulation and immune suppression. Intravenous immunoglobulin G (IVIG) is pooled serum IgG from multiple donors and is used to treat individuals with autoimmune and inflammatory disorders such as rheumatoid arthritis and Kawasaki’s disease, respectively. It contains all the subtypes of IgG (IgG1-4) and over 120 glycovariants due to variation of an Asparagine 297-linked glycan on the Fc. The species identified as the activating component of IVIG is sialylated IgG Fc. Comparisons of wild type Fc and sialylated Fc X-ray crystal structures suggests that sialylation causes an increase in conformational flexibility, which may be important for its anti-inflammatory properties.</p> <p>Although glycan modifications can promote the anti-inflammatory properties of the Fc, there are amino acid substitutions that cause Fcs to initiate an enhanced immune response. Mutations in the Fc can cause up to a 100-fold increase in binding affinity to activating Fc gamma receptors located on immune cells, and have been shown to enhance antibody dependent cell-mediated cytotoxicity. This is important in developing therapeutic antibodies against cancer and infectious diseases. Structural studies of mutant Fcs in complex with activating receptors gave insight into new protein-protein interactions that lead to an enhanced binding affinity.</p> <p>Together these studies show how dynamic and diverse the Fc region is and how both protein and carbohydrate modifications can alter structure, leading to IgG Fc’s switch from a pro-inflammatory to an anti-inflammatory protein.</p> 2015 Thesis NonPeerReviewed application/pdf https://thesis.library.caltech.edu/8914/1/Thesis_Alysia_Ahmed_052915.pdf https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250 Ahmed, Alysia Ashley (2015) Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9GT5K33. https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250 <https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250> https://thesis.library.caltech.edu/8914/
collection NDLTD
format Others
sources NDLTD
description <p>Immunoglobulin G (IgG) is central in mediating host defense due to its ability to target and eliminate invading pathogens. The fragment antigen binding (Fab) regions are responsible for antigen recognition; however the effector responses are encoded on the Fc region of IgG. IgG Fc displays considerable glycan heterogeneity, accounting for its complex effector functions of inflammation, modulation and immune suppression. Intravenous immunoglobulin G (IVIG) is pooled serum IgG from multiple donors and is used to treat individuals with autoimmune and inflammatory disorders such as rheumatoid arthritis and Kawasaki’s disease, respectively. It contains all the subtypes of IgG (IgG1-4) and over 120 glycovariants due to variation of an Asparagine 297-linked glycan on the Fc. The species identified as the activating component of IVIG is sialylated IgG Fc. Comparisons of wild type Fc and sialylated Fc X-ray crystal structures suggests that sialylation causes an increase in conformational flexibility, which may be important for its anti-inflammatory properties.</p> <p>Although glycan modifications can promote the anti-inflammatory properties of the Fc, there are amino acid substitutions that cause Fcs to initiate an enhanced immune response. Mutations in the Fc can cause up to a 100-fold increase in binding affinity to activating Fc gamma receptors located on immune cells, and have been shown to enhance antibody dependent cell-mediated cytotoxicity. This is important in developing therapeutic antibodies against cancer and infectious diseases. Structural studies of mutant Fcs in complex with activating receptors gave insight into new protein-protein interactions that lead to an enhanced binding affinity.</p> <p>Together these studies show how dynamic and diverse the Fc region is and how both protein and carbohydrate modifications can alter structure, leading to IgG Fc’s switch from a pro-inflammatory to an anti-inflammatory protein.</p>
author Ahmed, Alysia Ashley
spellingShingle Ahmed, Alysia Ashley
Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
author_facet Ahmed, Alysia Ashley
author_sort Ahmed, Alysia Ashley
title Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
title_short Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
title_full Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
title_fullStr Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
title_full_unstemmed Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins
title_sort structural characterization of pro-inflammatory and anti-inflammatory immunoglobulin g fc proteins
publishDate 2015
url https://thesis.library.caltech.edu/8914/1/Thesis_Alysia_Ahmed_052915.pdf
Ahmed, Alysia Ashley (2015) Structural Characterization of Pro-inflammatory and Anti-inflammatory Immunoglobulin G Fc Proteins. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/Z9GT5K33. https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250 <https://resolver.caltech.edu/CaltechTHESIS:05292015-064617250>
work_keys_str_mv AT ahmedalysiaashley structuralcharacterizationofproinflammatoryandantiinflammatoryimmunoglobulingfcproteins
_version_ 1719261042013372416