Cargando…

A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa

BACKGROUND: Formins are multidomain proteins defined by a conserved FH2 (formin homology 2) domain with actin nucleation activity preceded by a proline-rich FH1 (formin homology 1) domain. Formins act as profilin-modulated processive actin nucleators conserved throughout a wide range of eukaryotes....

Descripción completa

Detalles Bibliográficos
Autores principales: Rivero, Francisco, Muramoto, Tetsuya, Meyer, Ann-Kathrin, Urushihara, Hideko, Uyeda, Taro QP, Kitayama, Chikako
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC555941/
https://www.ncbi.nlm.nih.gov/pubmed/15740615
http://dx.doi.org/10.1186/1471-2164-6-28
_version_ 1782122570264346624
author Rivero, Francisco
Muramoto, Tetsuya
Meyer, Ann-Kathrin
Urushihara, Hideko
Uyeda, Taro QP
Kitayama, Chikako
author_facet Rivero, Francisco
Muramoto, Tetsuya
Meyer, Ann-Kathrin
Urushihara, Hideko
Uyeda, Taro QP
Kitayama, Chikako
author_sort Rivero, Francisco
collection PubMed
description BACKGROUND: Formins are multidomain proteins defined by a conserved FH2 (formin homology 2) domain with actin nucleation activity preceded by a proline-rich FH1 (formin homology 1) domain. Formins act as profilin-modulated processive actin nucleators conserved throughout a wide range of eukaryotes. RESULTS: We present a detailed sequence analysis of the 10 formins (ForA to J) identified in the genome of the social amoeba Dictyostelium discoideum. With the exception of ForI and ForC all other formins conform to the domain structure GBD/FH3-FH1-FH2-DAD, where DAD is the Diaphanous autoinhibition domain and GBD/FH3 is the Rho GTPase-binding domain/formin homology 3 domain that we propose to represent a single domain. ForC lacks a FH1 domain, ForI lacks recognizable GBD/FH3 and DAD domains and ForA, E and J have additional unique domains. To establish the relationship between formins of Dictyostelium and other organisms we constructed a phylogenetic tree based on the alignment of FH2 domains. Real-time PCR was used to study the expression pattern of formin genes. Expression of forC, D, I and J increased during transition to multi-cellular stages, while the rest of genes displayed less marked developmental variations. During sexual development, expression of forH and forI displayed a significant increase in fusion competent cells. CONCLUSION: Our analysis allows some preliminary insight into the functionality of Dictyostelium formins: all isoforms might display actin nucleation activity and, with the exception of ForI, might also be susceptible to autoinhibition and to regulation by Rho GTPases. The architecture GBD/FH3-FH1-FH2-DAD appears common to almost all Dictyostelium, fungal and metazoan formins, for which we propose the denomination of conventional formins, and implies a common regulatory mechanism.
format Text
id pubmed-555941
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-5559412005-04-03 A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa Rivero, Francisco Muramoto, Tetsuya Meyer, Ann-Kathrin Urushihara, Hideko Uyeda, Taro QP Kitayama, Chikako BMC Genomics Research Article BACKGROUND: Formins are multidomain proteins defined by a conserved FH2 (formin homology 2) domain with actin nucleation activity preceded by a proline-rich FH1 (formin homology 1) domain. Formins act as profilin-modulated processive actin nucleators conserved throughout a wide range of eukaryotes. RESULTS: We present a detailed sequence analysis of the 10 formins (ForA to J) identified in the genome of the social amoeba Dictyostelium discoideum. With the exception of ForI and ForC all other formins conform to the domain structure GBD/FH3-FH1-FH2-DAD, where DAD is the Diaphanous autoinhibition domain and GBD/FH3 is the Rho GTPase-binding domain/formin homology 3 domain that we propose to represent a single domain. ForC lacks a FH1 domain, ForI lacks recognizable GBD/FH3 and DAD domains and ForA, E and J have additional unique domains. To establish the relationship between formins of Dictyostelium and other organisms we constructed a phylogenetic tree based on the alignment of FH2 domains. Real-time PCR was used to study the expression pattern of formin genes. Expression of forC, D, I and J increased during transition to multi-cellular stages, while the rest of genes displayed less marked developmental variations. During sexual development, expression of forH and forI displayed a significant increase in fusion competent cells. CONCLUSION: Our analysis allows some preliminary insight into the functionality of Dictyostelium formins: all isoforms might display actin nucleation activity and, with the exception of ForI, might also be susceptible to autoinhibition and to regulation by Rho GTPases. The architecture GBD/FH3-FH1-FH2-DAD appears common to almost all Dictyostelium, fungal and metazoan formins, for which we propose the denomination of conventional formins, and implies a common regulatory mechanism. BioMed Central 2005-03-01 /pmc/articles/PMC555941/ /pubmed/15740615 http://dx.doi.org/10.1186/1471-2164-6-28 Text en Copyright © 2005 Rivero et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Rivero, Francisco
Muramoto, Tetsuya
Meyer, Ann-Kathrin
Urushihara, Hideko
Uyeda, Taro QP
Kitayama, Chikako
A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title_full A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title_fullStr A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title_full_unstemmed A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title_short A comparative sequence analysis reveals a common GBD/FH3-FH1-FH2-DAD architecture in formins from Dictyostelium, fungi and metazoa
title_sort comparative sequence analysis reveals a common gbd/fh3-fh1-fh2-dad architecture in formins from dictyostelium, fungi and metazoa
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC555941/
https://www.ncbi.nlm.nih.gov/pubmed/15740615
http://dx.doi.org/10.1186/1471-2164-6-28
work_keys_str_mv AT riverofrancisco acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT muramototetsuya acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT meyerannkathrin acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT urushiharahideko acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT uyedataroqp acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT kitayamachikako acomparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT riverofrancisco comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT muramototetsuya comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT meyerannkathrin comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT urushiharahideko comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT uyedataroqp comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa
AT kitayamachikako comparativesequenceanalysisrevealsacommongbdfh3fh1fh2dadarchitectureinforminsfromdictyosteliumfungiandmetazoa