Literature DB >> 22888006

Enhancing integrin α1 inserted (I) domain affinity to ligand potentiates integrin α1β1-mediated down-regulation of collagen synthesis.

Mingjian Shi1, Vadim Pedchenko, Briana H Greer, Wade D Van Horn, Samuel A Santoro, Charles R Sanders, Billy G Hudson, Brandt F Eichman, Roy Zent, Ambra Pozzi.   

Abstract

Integrin α1β1 binding to collagen IV, which is mediated by the α1-inserted (I) domain, down-regulates collagen synthesis. When unligated, a salt bridge between Arg(287) and Glu(317) is thought to keep this domain in a low affinity conformation. Ligand binding opens the salt bridge leading to a high-affinity conformation. How modulating integrin α1β1 affinity alters collagen homeostasis is unknown. To address this question, we utilized a thermolysin-derived product of the α1α2α1 network of collagen IV (α1α2α1(IV) truncated protomer) that selectively binds integrin α1β1. We show that an E317A substitution enhanced binding to the truncated protomer, consistent with a previous finding that this substitution eliminates the salt bridge. Surprisingly, we show that an R287A substitution did not alter binding, whereas R287E/E317R substitutions enhanced binding to the truncated protomer. NMR spectroscopy and molecular modeling suggested that eliminating the Glu(317) negative charge is sufficient to induce a conformational change toward the open state. Thus, the role played by Glu(317) is largely independent of the salt bridge. We further show that cells expressing E317A or R287E/E317R substitutions have enhanced down-regulation of collagen IV synthesis, which is mediated by the ERK/MAPK pathway. In conclusion, we have demonstrated that modulating the affinity of the extracellular α1 I domain to collagen IV enhances outside-in signaling by potentiating ERK activation and enhancing the down-regulation of collagen synthesis.

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Year:  2012        PMID: 22888006      PMCID: PMC3471707          DOI: 10.1074/jbc.M112.358648

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  40 in total

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2.  The role of the I domain in ligand binding of the human integrin alpha 1 beta 1.

Authors:  A Kern; R Briesewitz; I Bank; E E Marcantonio
Journal:  J Biol Chem       Date:  1994-09-09       Impact factor: 5.157

3.  Crystal structure of the I domain from integrin alpha2beta1.

Authors:  J Emsley; S L King; J M Bergelson; R C Liddington
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4.  The integrin alpha1 A-domain is a ligand binding site for collagens and laminin.

Authors:  D A Calderwood; D S Tuckwell; J Eble; K Kühn; M J Humphries
Journal:  J Biol Chem       Date:  1997-05-09       Impact factor: 5.157

5.  Crystal structure of the A domain from the alpha subunit of integrin CR3 (CD11b/CD18).

Authors:  J O Lee; P Rieu; M A Arnaout; R Liddington
Journal:  Cell       Date:  1995-02-24       Impact factor: 41.582

6.  Identification of putative ligand-binding sites of the integrin alpha 4 beta 1 (VLA-4, CD49d/CD29)

Authors:  T Kamata; W Puzon; Y Takada
Journal:  Biochem J       Date:  1995-02-01       Impact factor: 3.857

7.  Direct binding of collagen to the I domain of integrin alpha 2 beta 1 (VLA-2, CD49b/CD29) in a divalent cation-independent manner.

Authors:  T Kamata; Y Takada
Journal:  J Biol Chem       Date:  1994-10-21       Impact factor: 5.157

8.  Integrin alpha2beta1 mediates isoform-specific activation of p38 and upregulation of collagen gene transcription by a mechanism involving the alpha2 cytoplasmic tail.

Authors:  J Ivaska; H Reunanen; J Westermarck; L Koivisto; V M Kähäri; J Heino
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Authors:  H Gardner; A Broberg; A Pozzi; M Laato; J Heino
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10.  Integrin alpha1beta1 mediates a unique collagen-dependent proliferation pathway in vivo.

Authors:  A Pozzi; K K Wary; F G Giancotti; H A Gardner
Journal:  J Cell Biol       Date:  1998-07-27       Impact factor: 10.539

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2.  The structure of integrin α1I domain in complex with a collagen-mimetic peptide.

Authors:  Yanni K-Y Chin; Stephen J Headey; Biswaranjan Mohanty; Rahul Patil; Paul A McEwan; James D Swarbrick; Terrence D Mulhern; Jonas Emsley; Jamie S Simpson; Martin J Scanlon
Journal:  J Biol Chem       Date:  2013-11-01       Impact factor: 5.157

3.  Integrin-mediated type II TGF-β receptor tyrosine dephosphorylation controls SMAD-dependent profibrotic signaling.

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Review 4.  Surface biology of collagen scaffold explains blocking of wound contraction and regeneration of skin and peripheral nerves.

Authors:  I V Yannas; D Tzeranis; P T So
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5.  Integrin α1-null mice exhibit improved fatty liver when fed a high fat diet despite severe hepatic insulin resistance.

Authors:  Ashley S Williams; Li Kang; Jenny Zheng; Carrie Grueter; Deanna P Bracy; Freyja D James; Ambra Pozzi; David H Wasserman
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6.  Endothelial cell response to chemical, biological, and physical cues in bioactive hydrogels.

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Review 7.  Integrins in kidney disease.

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8.  Magnesium Activates Microsecond Dynamics to Regulate Integrin-Collagen Recognition.

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9.  Salt-bridge modulates differential calcium-mediated ligand binding to integrin α1- and α2-I domains.

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10.  Intrinsic local destabilization of the C-terminus predisposes integrin α1 I domain to a conformational switch induced by collagen binding.

Authors:  Ana Monica Nunes; Jie Zhu; Jacqueline Jezioro; Conceição A S A Minetti; David P Remeta; Richard W Farndale; Samir W Hamaia; Jean Baum
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