The BPAG1 locus
Open Access
- 20 August 2001
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 154 (4), 691-698
- https://doi.org/10.1083/jcb.200012098
Abstract
Bullous pemphigoid antigen 1 (BPAG1) is a member of the plakin family with cytoskeletal linker properties. Mutations in BPAG1 cause sensory neuron degeneration and skin fragility in mice. We have analyzed the BPAG1 locus in detail and found that it encodes different interaction domains that are combined in tissue-specific manners. These domains include an actin-binding domain (ABD), a plakin domain, a coiled coil (CC) rod domain, two different potential intermediate filament–binding domains (IFBDs), a spectrin repeat (SR)-containing rod domain, and a microtubule-binding domain (MTBD). There are at least three major forms of BPAG1: BPAG1-e (302 kD), BPAG1-a (615 kD), and BPAG1-b (834 kD). BPAG1-e has been described previously and consists of the plakin domain, the CC rod domain, and the first IFBD. It is the primary epidermal BPAG1 isoform, and its absence that is the likely cause of skin fragility in mutant mice. BPAG1-a is the major isoform in the nervous system and a homologue of the microtubule actin cross-linking factor, MACF. BPAG1-a is composed of the ABD, the plakin domain, the SR-containing rod domain, and the MTBD. The absence of BPAG1-a is the likely cause of sensory neurodegeneration in mutant mice. BPAG1-b is highly expressed in muscles, and has extra exons encoding a second IFBD between the plakin and SR-containing rod domains of BPAG1-a.Keywords
This publication has 18 references indexed in Scilit:
- Characterization of the microtubule binding domain of microtubule actin crosslinking factor (MACF): identification of a novel group of microtubule associated proteinsJournal of Cell Science, 2001
- Microtubule Actin Cross-Linking Factor (Macf)The Journal of cell biology, 1999
- Dystonin-Deficient Mice Exhibit an Intrinsic Muscle Weakness and an Instability of Skeletal Muscle CytoarchitectureDevelopmental Biology, 1999
- Dystonin Is Essential for Maintaining Neuronal Cytoskeleton OrganizationMolecular and Cellular Neuroscience, 1998
- Developmental Expression of BPAG1-n: Insights into the Spastic Ataxia and Gross Neurologic Degeneration inDystonia MusculorumMiceDevelopmental Biology, 1997
- An Essential Cytoskeletal Linker Protein Connecting Actin Microfilaments to Intermediate FilamentsCell, 1996
- Dystonin Expression in the Developing Nervous System Predominates in the Neurons That Degenerate indystonia musculorumMutant MiceMolecular and Cellular Neuroscience, 1995
- Dystonin transcripts are altered and their levels are reduced in the mouse neurological mutantdt24JBiochemistry and Cell Biology, 1995
- The mouse dystonia musculorum gene is a neural isoform of bullous pemphigoid antigen 1Nature Genetics, 1995
- Gene targeting of BPAG1: Abnormalities in mechanical strength and cell migration in stratified epithelia and neurologic degenerationCell, 1995