Please use this identifier to cite or link to this item: https://doi.org/10.1083/jcb.147.2.417
Title: Binding of integrin α6β4 to plectin prevents plectin association with f-actin but does not interfere with intermediate filament binding
Authors: Geerts, D
Fontao, L
Nievers, M.G
Schaapveld, R.Q.J
Purkis, P.E
Wheeler, G.N
Lane, E.B 
Leigh, I.M
Sonnenberg, A
Keywords: actin
f actin
fibronectin
integrin
plectin
protein subunit
actin
alpha6beta4 integrin
integrin
intermediate filament protein
membrane antigen
PLEC1 protein, human
plectin
amino terminal sequence
article
binding site
carboxy terminal sequence
cell immortalization
controlled study
cytoplasm
cytoskeleton
epidermolysis bullosa simplex
hemidesmosome
human
human cell
intermediate filament
keratinocyte
muscular dystrophy
nonhuman
nucleotide sequence
priority journal
protein binding
protein domain
protein localization
yeast
cell line
desmosome
genetic transfection
immunohistochemistry
keratinocyte
metabolism
protein binding
ultrastructure
Actins
Antigens, Surface
Cell Line, Transformed
Desmosomes
Humans
Immunohistochemistry
Integrin alpha6beta4
Integrins
Intermediate Filament Proteins
Intermediate Filaments
Keratinocytes
Plectin
Protein Binding
Transfection
Issue Date: 1999
Citation: Geerts, D, Fontao, L, Nievers, M.G, Schaapveld, R.Q.J, Purkis, P.E, Wheeler, G.N, Lane, E.B, Leigh, I.M, Sonnenberg, A (1999). Binding of integrin α6β4 to plectin prevents plectin association with f-actin but does not interfere with intermediate filament binding. Journal of Cell Biology 147 (2) : 417-434. ScholarBank@NUS Repository. https://doi.org/10.1083/jcb.147.2.417
Rights: Attribution 4.0 International
Abstract: Hemidesmosomes are stable adhesion complexes in basal epithelial cells that provide a link between the intermediate filament network and the extracellular matrix. We have investigated the recruitment of plectin into hemidesmosomes by the α6β4 integrin and have shown that the cytoplasmic domain of the β4 subunit associates with an NH2-terminal fragment of plectin that contains the actin-binding domain (ABD). When expressed in immortalized plectin-deficient keratinocytes from human patients with epidermolysis bullosa (EB) simplex with muscular dystrophy (MD-EBS), this fragment is colocalized with α6β4 in basal hemidesmosome-like clusters or associated with F-actin in stress fibers or focal contacts. We used a yeast two-hybrid binding assay in combination with an in vitro dot blot overlay assay to demonstrate that β4 interacts directly with plectin, and identified a major plectin-binding site on the second fibronectin type III repeat of the β4 cytoplasmic domain. Mapping of the β4 and actin-binding sites on plectin showed that the binding sites overlap and are both located in the plectin ABD. Using an in vitro competition assay, we could show that β4 can compete out the plectin ABD fragment from its association with F-actin. The ability of β4 to prevent binding of F-actin to plectin explains why F-actin has never been found in association with hemidesmosomes, and provides a molecular mechanism for a switch in plectin localization from actin filaments to basal intermediate filament-anchoring hemidesmosomes when β4 is expressed. Finally, by mapping of the COOH-terminally located binding site for several different intermediate filament proteins on plectin using yeast two-hybrid assays and cell transfection experiments with MD-EBS keratinocytes, we confirm that plectin interacts with different cytoskeletal networks.
Source Title: Journal of Cell Biology
URI: https://scholarbank.nus.edu.sg/handle/10635/181141
ISSN: 00219525
DOI: 10.1083/jcb.147.2.417
Rights: Attribution 4.0 International
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