Antigen binding molecules that bind light
The present invention relates antigen binding molecules, particularly antibodies, fragments and variants thereof, that bind to the TNF-related cytokine LIGHT (TNFSF14), competing with LIGHT binding to cellular receptors Herpes virus entry mediator (HVEM) and lymphotoxin beta receptor, and the use of said antigen binding molecules in treating and/or preventing inflammatory disorders and immune disorders.
1. An anti-LIGHT antigen binding molecule, wherein the antigen binding molecule has a higher affinity for membrane-bound LIGHT compared to soluble LIGHT, and wherein the anti-LIGHT antigen binding molecule comprises:
a heavy chain variable region comprising the amino acid sequence of SEQ ID NO: 117; and
a light chain variable region comprising the amino acid sequence of SEQ ID NO: 113.
2. An anti-LIGHT antigen binding molecule, wherein the antigen binding molecule has a higher affinity for membrane-bound LIGHT compared to soluble LIGHT, and wherein the anti-LIGHT antigen binding molecule comprises:
a heavy chain variable region comprising at least 80% identity to the amino acid sequence of SEQ ID NO: 117, wherein the heavy chain variable region comprises a VHCDR1 comprising the amino acid sequence DYAIH (SEQ ID NO: 118), a VHCDR2 comprising the amino acid sequence VI STYYG D AS YN Q KF KG (SEQ ID NO: 119), and a VHCDR3 comprising the amino acid sequence SRGEYGNYDAMDY (SEQ ID NO: 120); and
a light chain variable region comprising at least 80% identity to the amino acid sequence of SEQ ID NO: 113, wherein the light chain variable region comprises a VLCDR1 comprising the amino acid sequence RASESVDSYGNSFMH (SEQ ID NO: 114), a VLCDR2 comprising the amino acid sequence RASNLES (SEQ ID NO: 115) and a VLCDR3 comprising the amino acid sequence QQSNEDPYT (SEQ ID NO: 116).
3. An anti-LIGHT antigen binding molecule, wherein the antigen binding molecule has a higher affinity for membrane-bound LIGHT compared to soluble LIGHT, and wherein the anti-LIGHT antigen binding molecule is antibody 2B11.
4. The ant-LIGHT antigen binding molecule of claim 2 , wherein the anti-LIGHT antigen binding molecule binds to an epitope of human LIGHT comprising the amino acid sequence GRATSSSRVW (SEQ ID NO: 124).
5. The anti-LIGHT antigen binding molecule of claim 2 , wherein the antigen binding molecule is an antibody or antigen-binding fragment or derivative thereof.
6. The anti-LIGHT antigen binding molecule of claim 5 , wherein the antibody, antigen-binding fragment, or derivative is Fab, F(ab′)2, Fv, scFK dAb, Fd, or a diabody.
7. The anti-LIGHT antibody or antigen-binding fragment of claim 5 , wherein the antibody or antigen-binding fragment is an IgA, IgD, IgE, IgG, IgM or IgY antibody or antigen-binding fragment.
8. The anti-LIGHT antigen binding molecule of claim 2 , wherein the antigen binding molecule inhibits the binding of membrane LIGHT to HVEM and LTpR or the binding of LIGHT expressing cells to HVEM and LTpR.
9. The anti-LIGHT antigen binding molecule of claim 2 , wherein the antigen binding molecule partially inhibits the binding of membrane LIGHT to decoy receptor 3 or cells expressing membrane LIGHT to decoy receptor 3.
10. The anti-LIGHT antigen binding molecule of claim 2 , wherein the antigen binding molecule decreases the secretion of IL-8 when administered in vivo or in vitro.
11. The anti-LIGHT antigen binding molecule of claim 7 , wherein the antibody or antigen-binding fragment is an IgG antibody or antigen-binding fragment.
12. The anti-LIGHT antigen binding molecule of claim 9 , wherein the antibody or antigen-binding fragment is an IgG4 antibody or antigen-binding fragment.