Results 21 to 30 of about 180 (71)

Whole‐genome comparison between the type strain of Halobacterium salinarum (DSM 3754T) and the laboratory strains R1 and NRC‐1

open access: yesMicrobiologyOpen, Volume 9, Issue 2, February 2020., 2020
The genome of the Halobacterium salinarum type strain (91‐R6, DSM 3754) was compared at the DNA and protein levels to the genomes of two well‐studied laboratory strains, NRC‐1 and R1. The chromosomes and portions of the plasmids were very closely related. However, distinct homologs for proteins involved in motility and N‐glycosylation were encountered.
Friedhelm Pfeiffer   +4 more
wiley   +1 more source

The Response of Haloferax volcanii to Salt and Temperature Stress: A Proteome Study by Label‐Free Mass Spectrometry

open access: yesPROTEOMICS, Volume 19, Issue 20, October 2019., 2019
Abstract In‐depth proteome analysis of the haloarchaeal model organism Haloferax volcanii has been performed under standard, low/high salt, and low/high temperature conditions using label‐free mass spectrometry. Qualitative analysis of protein identification data from high‐pH/reversed‐phase fractionated samples indicates 61.1% proteome coverage (2509 ...
Živojin Jevtić   +6 more
wiley   +1 more source

Data_Sheet_3_N-Glycosylation Is Important for Halobacterium salinarum Archaellin Expression, Archaellum Assembly and Cell Motility.xlsx

open access: yes, 2019
Halobacterium salinarum are halophilic archaea that display directional swimming in response to various environmental signals, including light, chemicals and oxygen. In Hbt. salinarum, the building blocks (archaellins) of the archaeal swimming apparatus (
Marianna Zaretsky (3826600)   +3 more
core   +1 more source

Data_Sheet_2_N-Glycosylation Is Important for Halobacterium salinarum Archaellin Expression, Archaellum Assembly and Cell Motility.xlsx

open access: yes, 2019
Halobacterium salinarum are halophilic archaea that display directional swimming in response to various environmental signals, including light, chemicals and oxygen. In Hbt. salinarum, the building blocks (archaellins) of the archaeal swimming apparatus (
Marianna Zaretsky (3826600)   +3 more
core   +1 more source

Data_Sheet_1_N-Glycosylation Is Important for Halobacterium salinarum Archaellin Expression, Archaellum Assembly and Cell Motility.docx

open access: yes, 2019
Halobacterium salinarum are halophilic archaea that display directional swimming in response to various environmental signals, including light, chemicals and oxygen. In Hbt. salinarum, the building blocks (archaellins) of the archaeal swimming apparatus (
Marianna Zaretsky (3826600)   +3 more
core   +1 more source

Data_Sheet_1_Identifying Components of a Halobacterium salinarum N-Glycosylation Pathway.docx

open access: yes, 2021
Whereas N-glycosylation is a seemingly universal process in Archaea, pathways of N-glycosylation have only been experimentally verified in a mere handful of species.
Zlata Vershinin (3549794)   +3 more
core   +1 more source

Dechiffrierung von Wechselwirkungen der Untereinheiten des Archaellum von Crenarchaeota

open access: yes, 2015
The archaeal motility structure, the archaellum is an intriguing hybrid of the function and architecture of two distinct motility organelles, the bacterial flagellum and the T4P, respectively.
Neiner, Tomasz Paweł (1064589189)
core   +2 more sources

Additional file 2: of Genomic variation and biogeography of Antarctic haloarchaea

open access: yes, 2018
Figures S1-S8 and Tables S1-S13: Figure S1. Archaellin protein sequence alignment. Figure S2. arCOG functional classes of genes present on ACAM34 and R1S1 secondary replicons. Figure S3.
Simon Roux (151891)   +10 more
core   +1 more source

Identification of Novel Genes Involved in N-Glycosylation and Regulation of Archaella Assembly and Exploration of the Effect of N-Glycosylation on Archaella Assembly in Methanococcus Maripaludis [PDF]

open access: yes, 2015
Thesis (Ph.D, Microbiology & Immunology) -- Queen's University, 2015-07-10 16:50:37.719In this thesis, using Methanococcus maripaludis as a model organism, significant, novel advances have been made to the understanding of the archaeal N ...
Ding, Yan
core  

The transcriptional regulator EarA and intergenic terminator sequences modulate archaellation in Pyrococcus furiosus. [PDF]

open access: yesFront Microbiol, 2023
Stöckl R   +5 more
europepmc   +1 more source

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