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・ Angiolo Vestris
・ Angiology
・ Angiology (journal)
・ Angiolymphoid hyperplasia with eosinophilia
・ Angioma
・ Angioma serpiginosum
・ Angiomatoid fibrous histiocytoma
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Angiopoietin
・ Angiopoietin 1
・ Angiopoietin receptor
・ Angiopoietin-related protein 1
・ Angiopoietin-related protein 2
・ Angiopoietin-related protein 7
・ Angiopolybia pallens
・ Angioprevention
・ Angiopteris
・ Angiopteris evecta
・ Angiopus
・ Angiosarcoma
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・ Angiosperm Phylogeny Group
・ Angiosperm Phylogeny Website


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Angiopoietin : ウィキペディア英語版
Angiopoietin

Angiopoietin is part of a family of vascular growth factors that play a role in embryonic and postnatal angiogenesis. Angiopoietin signaling most directly corresponds with angiogenesis, the process by which new arteries and veins form from preexisting blood vessels. Angiogenesis proceeds through sprouting, endothelial cell migration, proliferation, and vessel destabilization and stabilization. They are responsible for assembling and disassembling the endothelial lining of blood vessels. Angiopoietin cytokines are involved with controlling microvascular permeability, vasodilation, and vasoconstriction by signaling smooth muscle cells surrounding vessels.
There are now four identified angiopoietins:
ANGPT1, ANGPT2, ANGPT4. In addition, there are a number of proteins that are closely related to angiopoietins (, , , , , , ).
Angiopoietin-1 is critical for vessel maturation, adhesion, migration, and survival. Angiopoietin-2, on the other hand, promotes cell death and disrupts vascularization. Yet, when it is in conjunction with vascular endothelial growth factors, or VEGF, it can promote neo-vascularization.
==Structure==
Structurally, angiopoietins have an N-terminal super clustering domain, a central coiled domain, a linker region, and a C-terminal fibrinogen-related domain responsible for the binding between the ligand and receptor. TIE-1 heterodimerizes with Tie-2 to enhance and modulate signal transduction of Tie-2.〔
Angiopoietin-1 encodes a 498 amino acid polypeptide with a molecular weight of 57 kDa whereas angiopoietin-2 encodes a 496 amino acid polypeptide.〔
Angiopoietin-1 and angiopoietin-2 can form dimers, trimers, and tetramers. Angiopoietin-1 has the ability to form higher order multimers through its super clustering domain. However, not all of the structures can interact with the tyrosine kinase receptor. The receptor can only be activated at the tetramer level or higher.〔

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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