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91.
Suppression and synthetic‐lethal genetic relationships of ΔgpsB mutations indicate that GpsB mediates protein phosphorylation and penicillin‐binding protein interactions in Streptococcus pneumoniae D39
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Britta E. Rued Jiaqi J. Zheng Andrea Mura Ho‐Ching T. Tsui Michael J. Boersma Jeffrey L. Mazny Federico Corona Amilcar J. Perez Daniela Fadda Linda Doubravová Karolína Buriánková Pavel Branny Orietta Massidda Malcolm E. Winkler 《Molecular microbiology》2017,103(6):931-957
GpsB regulatory protein and StkP protein kinase have been proposed as molecular switches that balance septal and peripheral (side‐wall like) peptidoglycan (PG) synthesis in Streptococcus pneumoniae (pneumococcus); yet, mechanisms of this switching remain unknown. We report that ΔdivIVA mutations are not epistatic to ΔgpsB division‐protein mutations in progenitor D39 and related genetic backgrounds; nor is GpsB required for StkP localization or FDAA labeling at septal division rings. However, we confirm that reduction of GpsB amount leads to decreased protein phosphorylation by StkP and report that the essentiality of ΔgpsB mutations is suppressed by inactivation of PhpP protein phosphatase, which concomitantly restores protein phosphorylation levels. ΔgpsB mutations are also suppressed by other classes of mutations, including one that eliminates protein phosphorylation and may alter division. Moreover, ΔgpsB mutations are synthetically lethal with Δpbp1a, but not Δpbp2a or Δpbp1b mutations, suggesting GpsB activation of PBP2a activity. Consistent with this result, co‐IP experiments showed that GpsB complexes with EzrA, StkP, PBP2a, PBP2b and MreC in pneumococcal cells. Furthermore, depletion of GpsB prevents PBP2x migration to septal centers. These results support a model in which GpsB negatively regulates peripheral PG synthesis by PBP2b and positively regulates septal ring closure through its interactions with StkP‐PBP2x. 相似文献
92.
First discovery of the charophycean green alga Lychnothamnus barbatus (Charophyceae) extant in the New World
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93.
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Dorothea Bedigian Sebsebe Demissew Paul Gepts Daniel F. Austin Neil A. Harriman John Klock Sarah Walshaw John Richard Stepp Beverly J. Brown Julie Polley David Winston Barbara Pickersgill Patrick Van Damme Nina L. Etkin Beronda L. Montgomery Linda Perry Stephen E Siebert Robert J. Krueger Kathleen McConnell Wendy Applequist Mary Theresa Bonhage-Freund Karol Chandler-Ezell 《Economic botany》2005,59(4):395-412
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Daniel F. Austin Richard Felger Karol Chandler-Ezell Michael J. Balick Kurt Allerslev Reynertson Alfredo Gomez-Beloz My Lien T. Nguyen Rob Dean Neil A. Harriman Dorothea Bedigian Mary Theresa Bonhage-Freund Wendy Applequist Linda M. Lyon John Klock My Lien T. Nguyen 《Economic botany》2005,59(2):197-209
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Stacey DH Fox BC Poore SO Bentz ML Gutowski KA 《Plastic and reconstructive surgery》2008,122(4):120e-127e
LEARNING OBJECTIVES:: After studying this article, the participant should be able to: 1. Identify risk factors associated with community-acquired methicillin-resistant Staphylococcus aureus. 2. Recognize the clinical presentation of patients with community-acquired methicillin-resistant S. aureus. 3. Understand the treatment and indications for decolonization of patients who have community-acquired methicillin-resistant S. aureus infections. SUMMARY:: Community-acquired methicillin-resistant Staphylococcus aureus has evolved over the past 10 years as a new health threat seen by plastic surgeons and is an increasing cause of soft-tissue infections. This pathogen has several distinct virulence factors and unique antimicrobial susceptibilities that distinguish methicillin-resistant S. aureus from traditional hospital-acquired methicillin-resistant S. aureus. This article reviews the epidemiology, risk factors, clinical presentation, and treatment of community-acquired methicillin-resistant S. aureus. 相似文献
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Judita Lihová Tor Carlsen Christian Brochmann Karol Marhold 《Journal of Biogeography》2009,36(1):104-120
Aim We use Cardamine alpina and C. resedifolia as models to address the detailed history of disjunctions in the European alpine system. These species grow on siliceous bedrock: C. alpina in the Alps and Pyrenees, and C. resedifolia in several mountain ranges from the Sierra Nevada to the Balkans. We explore differentiation among their disjunct populations as well as within the contiguous Alpine and Pyrenean ranges, and compare the phylogeographical histories of these diploid sister species. We also include samples of the closely related, arctic diploid C. bellidifolia in order to explore its origin and post‐glacial establishment. Location European alpine system, Norway and Iceland. Methods We employed amplified fragment length polymorphisms (AFLPs). AFLP data were analysed using principal coordinates analysis, neighbour joining and Bayesian clustering, and measures of diversity and differentiation were computed. Results For the snow‐bed species C. alpina (27 populations, 203 plants) we resolved two strongly divergent lineages, corresponding to the Alps and the Pyrenees. Although multiple glacial refugia were invoked in the Pyrenees, we inferred only a single one in the Maritime Alps – from which rapid post‐glacial colonization of the entire Alps occurred, accompanied by a strong founder effect. For C. resedifolia (33 populations, 247 plants), which has a broader ecological amplitude and a wider distribution, the genetic structuring was rather weak and did not correspond to the main geographical disjunctions. This species consists of two widespread and largely sympatric main genetic groups (one of them subdivided into four geographically more restricted groups), and frequent secondary contacts exist between them. Main conclusions The conspicuously different histories of these two sister species are likely to be associated with their different ecologies. The more abundant habitats available for C. resedifolia may have increased the probability of its gradual migration during colder periods and also of successful establishment after long‐distance dispersal, whereas C. alpina has been restricted by its dependence on snow‐beds. Surprisingly, the arctic C. bellidifolia formed a very divergent lineage with little variation, contradicting a scenario of recent, post‐glacial migration from the Alps or Pyrenees. 相似文献