scholarly article | Q13442814 |
P2093 | author name string | Harold P Erickson | |
Tomoo Ohashi | |||
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Cell adhesion and signaling on the fibronectin 1st type III repeat; requisite roles for cell surface proteoglycans and integrins | Q24805325 | ||
Tissue sulfhydryl groups | Q26778486 | ||
Pathogenic bacteria attach to human fibronectin through a tandem beta-zipper | Q27641182 | ||
Structure of a Fibronectin Type III Domain from Tenascin Phased by MAD Analysis of the Selenomethionyl Protein | Q27641423 | ||
Anastellin, an FN3 fragment with fibronectin polymerization activity, resembles amyloid fibril precursors | Q27641924 | ||
2.0 A crystal structure of a four-domain segment of human fibronectin encompassing the RGD loop and synergy region | Q27732239 | ||
Structure and stability of an immunoglobulin superfamily domain from twitchin, a muscle protein of the nematode Caenorhabditis elegans | Q27734230 | ||
The disulfide bonding pattern in ficolin multimers | Q28189880 | ||
Fluid shear in viscous fibronectin gels allows aggregation of fibrous materials for CNS tissue engineering | Q28245074 | ||
Regulated splicing of the fibronectin EDA exon is essential for proper skin wound healing and normal lifespan | Q28593378 | ||
Identification of the fibronectin sequences required for assembly of a fibrillar matrix | Q28645670 | ||
Dynamics and elasticity of the fibronectin matrix in living cell culture visualized by fibronectin-green fluorescent protein | Q30487311 | ||
Angiostatic peptides use plasma fibronectin to home to angiogenic vasculature | Q33837087 | ||
Mechanical and chemical unfolding of a single protein: a comparison | Q33856547 | ||
A fibronectin fragment inhibits tumor growth, angiogenesis, and metastasis | Q34622176 | ||
Antiangiogenic proteins require plasma fibronectin or vitronectin for in vivo activity | Q36161003 | ||
Interaction of the 70,000-mol-wt amino-terminal fragment of fibronectin with the matrix-assembly receptor of fibroblasts | Q36211533 | ||
Fibronectin matrix regulates activation of RHO and CDC42 GTPases and cell cycle progression | Q36255528 | ||
Integrin dynamics and matrix assembly: tensin-dependent translocation of alpha(5)beta(1) integrins promotes early fibronectin fibrillogenesis | Q36326968 | ||
A novel fibronectin binding site required for fibronectin fibril growth during matrix assembly | Q36376920 | ||
Rapid refolding of a proline-rich all-beta-sheet fibronectin type III module | Q37291793 | ||
Formation of amyloid-like fibrils by self-association of a partially unfolded fibronectin type III module | Q38335752 | ||
Integrin-linked protein kinase regulates fibronectin matrix assembly, E-cadherin expression, and tumorigenicity | Q41067663 | ||
Beta 1 integrin-dependent and -independent polymerization of fibronectin | Q41254786 | ||
Superfibronectin is a functionally distinct form of fibronectin | Q41494889 | ||
Transformed human cells release different fibronectin variants than do normal cells | Q41512268 | ||
Matrix assembly of recombinant fibronectin polypeptide consisting of amino-terminal 70 kDa and carboxyl-terminal 37 kDa regions | Q41635472 | ||
The compact conformation of fibronectin is determined by intramolecular ionic interactions | Q42602099 | ||
Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis | Q48963900 | ||
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P433 | issue | 47 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 39143-39151 | |
P577 | publication date | 2005-09-29 | |
P1433 | published in | Journal of Biological Chemistry | Q867727 |
P1476 | title | Domain unfolding plays a role in superfibronectin formation. | |
P478 | volume | 280 |
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