A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.

A Golgi-associated bi-lobed structure was previously found to be important for Golgi duplication and cell division in Trypanosoma brucei. To further understand its functions, comparative proteomics was performed on extracted flagellar complexes (including the flagellum and flagellum-associated struc...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Qing Zhou, Ladan Gheiratmand, Yixin Chen, Teck Kwang Lim, Jun Zhang, Shaowei Li, Ningshao Xia, Binghai Liu, Qingsong Lin, Cynthia Y He
Formato: article
Lenguaje:EN
Publicado: Public Library of Science (PLoS) 2010
Materias:
R
Q
Acceso en línea:https://doaj.org/article/40fba8d7caee42568d3e28b57070af30
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:40fba8d7caee42568d3e28b57070af30
record_format dspace
spelling oai:doaj.org-article:40fba8d7caee42568d3e28b57070af302021-11-25T06:25:28ZA comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.1932-620310.1371/journal.pone.0009660https://doaj.org/article/40fba8d7caee42568d3e28b57070af302010-03-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/20300570/pdf/?tool=EBIhttps://doaj.org/toc/1932-6203A Golgi-associated bi-lobed structure was previously found to be important for Golgi duplication and cell division in Trypanosoma brucei. To further understand its functions, comparative proteomics was performed on extracted flagellar complexes (including the flagellum and flagellum-associated structures such as the basal bodies and the bi-lobe) and purified flagella to identify new bi-lobe proteins. A leucine-rich repeats containing protein, TbLRRP1, was characterized as a new bi-lobe component. The anterior part of the TbLRRP1-labeled bi-lobe is adjacent to the single Golgi apparatus, and the posterior side is tightly associated with the flagellar pocket collar marked by TbBILBO1. Inducible depletion of TbLRRP1 by RNA interference inhibited duplication of the bi-lobe as well as the adjacent Golgi apparatus and flagellar pocket collar. Formation of a new flagellum attachment zone and subsequent cell division were also inhibited, suggesting a central role of bi-lobe in Golgi, flagellar pocket collar and flagellum attachment zone biogenesis.Qing ZhouLadan GheiratmandYixin ChenTeck Kwang LimJun ZhangShaowei LiNingshao XiaBinghai LiuQingsong LinCynthia Y HePublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 5, Iss 3, p e9660 (2010)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Qing Zhou
Ladan Gheiratmand
Yixin Chen
Teck Kwang Lim
Jun Zhang
Shaowei Li
Ningshao Xia
Binghai Liu
Qingsong Lin
Cynthia Y He
A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
description A Golgi-associated bi-lobed structure was previously found to be important for Golgi duplication and cell division in Trypanosoma brucei. To further understand its functions, comparative proteomics was performed on extracted flagellar complexes (including the flagellum and flagellum-associated structures such as the basal bodies and the bi-lobe) and purified flagella to identify new bi-lobe proteins. A leucine-rich repeats containing protein, TbLRRP1, was characterized as a new bi-lobe component. The anterior part of the TbLRRP1-labeled bi-lobe is adjacent to the single Golgi apparatus, and the posterior side is tightly associated with the flagellar pocket collar marked by TbBILBO1. Inducible depletion of TbLRRP1 by RNA interference inhibited duplication of the bi-lobe as well as the adjacent Golgi apparatus and flagellar pocket collar. Formation of a new flagellum attachment zone and subsequent cell division were also inhibited, suggesting a central role of bi-lobe in Golgi, flagellar pocket collar and flagellum attachment zone biogenesis.
format article
author Qing Zhou
Ladan Gheiratmand
Yixin Chen
Teck Kwang Lim
Jun Zhang
Shaowei Li
Ningshao Xia
Binghai Liu
Qingsong Lin
Cynthia Y He
author_facet Qing Zhou
Ladan Gheiratmand
Yixin Chen
Teck Kwang Lim
Jun Zhang
Shaowei Li
Ningshao Xia
Binghai Liu
Qingsong Lin
Cynthia Y He
author_sort Qing Zhou
title A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
title_short A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
title_full A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
title_fullStr A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
title_full_unstemmed A comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in Trypanosoma brucei.
title_sort comparative proteomic analysis reveals a new bi-lobe protein required for bi-lobe duplication and cell division in trypanosoma brucei.
publisher Public Library of Science (PLoS)
publishDate 2010
url https://doaj.org/article/40fba8d7caee42568d3e28b57070af30
work_keys_str_mv AT qingzhou acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT ladangheiratmand acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT yixinchen acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT teckkwanglim acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT junzhang acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT shaoweili acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT ningshaoxia acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT binghailiu acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT qingsonglin acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT cynthiayhe acomparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT qingzhou comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT ladangheiratmand comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT yixinchen comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT teckkwanglim comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT junzhang comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT shaoweili comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT ningshaoxia comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT binghailiu comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT qingsonglin comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
AT cynthiayhe comparativeproteomicanalysisrevealsanewbilobeproteinrequiredforbilobeduplicationandcelldivisionintrypanosomabrucei
_version_ 1718413737926328320