In vitro functional characterization of feline IgGs

Catherine J Strietzel1, Lisa M Bergeron1, Theodore Oliphant1

  • 1Zoetis, Inc., Global Therapeutic Research, Veterinary Medicine Research and Development, 333 Portage St., Kalamazoo, MI 49007, USA.

Insights

This study characterizes feline immunoglobulin G (IgG) subclasses, revealing IgG1 alleles are abundant and elicit strong immune responses. An additional IgG subclass shows potential for therapeutic applications due to its Fc receptor binding properties.

Area of Science:

  • Immunology
  • Veterinary Medicine
  • Molecular Biology

Background:

  • Functional properties of feline immunoglobulins G (IgGs) are largely unknown.
  • Characterizing feline IgG subclasses is crucial for understanding feline immune responses and developing targeted therapies.

Purpose of the Study:

  • To perform in vitro characterization of cloned feline IgGs.
  • To determine the binding affinities of feline IgG subclasses to Fc receptors.

Main Methods:

  • Cloning and characterization of chimeric monoclonal antibodies with identified feline IgG heavy chains.
  • Rapid amplification of cDNA ends (RACE) and PCR to identify feline IgG heavy chain constant regions (IGHC) and Fc receptor sequences.
  • Binding assays to determine affinities of feline IgGs to recombinant feline Fc gamma receptor I (FcγRI), Fc neonatal receptor (FcRn), and Fc gamma receptor III (FcγRIII).

Main Results:

  • Two abundant feline IgG1 alleles (IgG1a and IgG1b) were identified, comprising ~98% of feline IgG.
  • Both IgG1 alleles demonstrated high affinity for fFcRn (KD=2-5 nM) and fFcγRI (KD=10-20 nM), and moderate affinity for fFcγRIII (2-4 μM).
  • An additional, less abundant IgG subclass (~2%) showed comparable FcRn binding but negligible binding to fFcγRI and fFcγRIII, suggesting potentially different effector functions.

Conclusions:

  • Feline IgG1a and IgG1b are predicted to induce strong effector functions in vivo due to their high affinity to Fc receptors.
  • The newly identified IgG subclass may have a similar serum half-life but potentially reduced effector functions compared to IgG1.
  • This research provides the first characterization of feline IgG affinities to Fc receptors, paving the way for feline-specific antibody therapeutics.

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