Oligomerization and multimerization are critical for angiopoietin-1 to bind and phosphorylate Tie2

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Angiopoietin-1 (Ang1) is an essential molecule for blood vessel formation; however, little is known about the structure-function relationships of Ang1 with its receptor, Tie2 ( tyrosine kinase with immunoglobulin and epidermal growth factor homology domain-2'). In this study, we generated several Ang1 and angiopoietin-2 (Ang2) variants to define the role of the superclustering and oligomerization domains of the Ang1 protein. Then we analyzed the molecular structure of the variants with SDS-PAGE and rotary metal-shadowing transmission electron microscopy (RMSTEM) and determined the effects of these variants on the binding and activation of Tie2. Ang1 exists as heterogeneous multimers with basic trimeric, tetrameric, and pentameric oligomers, whereas Ang2 exists as trimeric, tetrameric, and pentameric oligomers. The variant Ang1C265S, consisting of trimers, tetramers, and pentamers without multimeric forms of Ang1, yielded less Tie2 activation than did Ang1, whereas monomeric Ang1 (Ang1/FD), dimeric Ang1 variants (Ang1D2, and Ang1D3), and dimeric and trimeric Ang1 variant (Ang1D1) dramatically lost their ability to bind and activate Tie2. An Ang1 protein in which two cysteines ( amino acids 41 and 54) were replaced with serines (Ang1C41S/C54S) formed mostly dimers and trimers that were not able to bind and activate Tie2. In addition, improper creation of a new cysteine in Ang2 (Ang2S263C) dramatically induced Ang2 aggregation without activating Tie2. In conclusion, proper oligomerization of Ang1 having at least four sub-units by the intermolecular disulfide linkage involving cysteines 41 and 54 is critical for Tie2 binding and activation. Thus, our data shed a light on the structure-function relationships of Ang1 with Tie2.
Publisher
AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Issue Date
2005-05
Language
English
Article Type
Article
Keywords

ENDOTHELIAL-CELLS; OVEREXPRESSING ANGIOPOIETIN-1; INDUCED APOPTOSIS; ANGIOGENESIS; RECEPTOR; LIGAND; GROWTH; EXPRESSION; MICE; VASCULARIZATION

Citation

JOURNAL OF BIOLOGICAL CHEMISTRY, v.280, pp.20126 - 20131

ISSN
0021-9258
DOI
10.1074/jbc.M500292200
URI
http://hdl.handle.net/10203/92646
Appears in Collection
BS-Journal Papers(저널논문)MSE-Journal Papers(저널논문)
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