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Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein

Molecules that couple the actin-based cytoskeleton to intracellular signaling pathways are central to the processes of cellular morphogenesis and differentiation. We have characterized a novel protein, the actin-binding LIM (abLIM) protein, which could mediate such interactions between actin filamen...

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Autores principales: Roof, Dorothy J., Hayes, Annmarie, Adamian, Michael, Chishti, Athar H., Li, Tiansen
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2141644/
https://www.ncbi.nlm.nih.gov/pubmed/9245787
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author Roof, Dorothy J.
Hayes, Annmarie
Adamian, Michael
Chishti, Athar H.
Li, Tiansen
author_facet Roof, Dorothy J.
Hayes, Annmarie
Adamian, Michael
Chishti, Athar H.
Li, Tiansen
author_sort Roof, Dorothy J.
collection PubMed
description Molecules that couple the actin-based cytoskeleton to intracellular signaling pathways are central to the processes of cellular morphogenesis and differentiation. We have characterized a novel protein, the actin-binding LIM (abLIM) protein, which could mediate such interactions between actin filaments and cytoplasmic targets. abLIM protein consists of a COOH-terminal cytoskeletal domain that is fused to an NH(2)-terminal domain consisting of four double zinc finger motifs. The cytoskeletal domain is ∼50% identical to erythrocyte dematin, an actin-bundling protein of the red cell membrane skeleton, while the zinc finger domains conform to the LIM motif consensus sequence. In vitro expression studies demonstrate that abLIM protein can bind to F-actin through the dematin-like domain. Transcripts corresponding to three distinct isoforms have a widespread tissue distribution. However, a polypeptide corresponding to the full-length isoform is found exclusively in the retina and is enriched in biochemical extracts of retinal rod inner segments. abLIM protein also undergoes extensive phosphorylation in light-adapted retinas in vivo, and its developmental expression in the retina coincides with the elaboration of photoreceptor inner and outer segments. Based on the composite primary structure of abLIM protein, actin-binding capacity, potential regulation via phosphorylation, and isoform expression pattern, we speculate that abLIM may play a general role in bridging the actin-based cytoskeleton with an array of potential LIM protein-binding partners. The developmental time course of abLIM expression in the retina suggests that the retina-specific isoform may have a specialized role in the development or elaboration of photoreceptor inner and outer segments.
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spelling pubmed-21416442008-05-01 Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein Roof, Dorothy J. Hayes, Annmarie Adamian, Michael Chishti, Athar H. Li, Tiansen J Cell Biol Article Molecules that couple the actin-based cytoskeleton to intracellular signaling pathways are central to the processes of cellular morphogenesis and differentiation. We have characterized a novel protein, the actin-binding LIM (abLIM) protein, which could mediate such interactions between actin filaments and cytoplasmic targets. abLIM protein consists of a COOH-terminal cytoskeletal domain that is fused to an NH(2)-terminal domain consisting of four double zinc finger motifs. The cytoskeletal domain is ∼50% identical to erythrocyte dematin, an actin-bundling protein of the red cell membrane skeleton, while the zinc finger domains conform to the LIM motif consensus sequence. In vitro expression studies demonstrate that abLIM protein can bind to F-actin through the dematin-like domain. Transcripts corresponding to three distinct isoforms have a widespread tissue distribution. However, a polypeptide corresponding to the full-length isoform is found exclusively in the retina and is enriched in biochemical extracts of retinal rod inner segments. abLIM protein also undergoes extensive phosphorylation in light-adapted retinas in vivo, and its developmental expression in the retina coincides with the elaboration of photoreceptor inner and outer segments. Based on the composite primary structure of abLIM protein, actin-binding capacity, potential regulation via phosphorylation, and isoform expression pattern, we speculate that abLIM may play a general role in bridging the actin-based cytoskeleton with an array of potential LIM protein-binding partners. The developmental time course of abLIM expression in the retina suggests that the retina-specific isoform may have a specialized role in the development or elaboration of photoreceptor inner and outer segments. The Rockefeller University Press 1997-08-11 /pmc/articles/PMC2141644/ /pubmed/9245787 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Roof, Dorothy J.
Hayes, Annmarie
Adamian, Michael
Chishti, Athar H.
Li, Tiansen
Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title_full Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title_fullStr Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title_full_unstemmed Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title_short Molecular Characterization of abLIM, a Novel Actin-binding and Double Zinc Finger Protein
title_sort molecular characterization of ablim, a novel actin-binding and double zinc finger protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2141644/
https://www.ncbi.nlm.nih.gov/pubmed/9245787
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