scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1085122329 |
P356 | DOI | 10.1038/S41598-017-01551-4 |
P932 | PMC publication ID | 5431200 |
P698 | PubMed publication ID | 28469253 |
P50 | author | Hua Xie | Q87989660 |
Richard Lamont | Q89232703 | ||
P2093 | author name string | Meng-Hsuan Ho | |
P2860 | cites work | Short fimbriae of Porphyromonas gingivalis and their role in coadhesion with Streptococcus gordonii | Q24531932 |
Low-abundance biofilm species orchestrates inflammatory periodontal disease through the commensal microbiota and complement | Q24594632 | ||
Porphyromonas gingivalis as a potential community activist for disease | Q24616806 | ||
Porphyromonas gingivalis minor fimbriae are required for cell-cell interactions | Q24678665 | ||
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Periodontitis: from microbial immune subversion to systemic inflammation | Q26996386 | ||
Ligation-independent cloning of PCR products (LIC-PCR) | Q29618962 | ||
Interaction of Porphyromonas gingivalis with oral streptococci requires a motif that resembles the eukaryotic nuclear receptor box protein-protein interaction domain | Q33334030 | ||
Distinct roles of long/short fimbriae and gingipains in homotypic biofilm development by Porphyromonas gingivalis | Q33452861 | ||
FimR and FimS: biofilm formation and gene expression in Porphyromonas gingivalis | Q33648675 | ||
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Molecular genetics and nomenclature of proteases of Porphyromonas gingivalis | Q33852051 | ||
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Mechanism and implications of CXCR4-mediated integrin activation by Porphyromonas gingivalis | Q34008200 | ||
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Alkali production by oral bacteria and protection against dental caries | Q34091344 | ||
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Role of arginine deiminase of Streptococcus cristatus in Porphyromonas gingivalis colonization | Q34290175 | ||
The keystone-pathogen hypothesis. | Q34297138 | ||
Oral microbiota and systemic disease | Q34377877 | ||
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Fimbrial proteins of porphyromonas gingivalis mediate in vivo virulence and exploit TLR2 and complement receptor 3 to persist in macrophages. | Q54476982 | ||
From the Periplasmic Signaling Domain to the Extracellular Face of an Outer Membrane Signal Transducer of Pseudomonas aeruginosa: Crystal Structure of the Ferric Pyoverdine Outer Membrane Receptor | Q63359528 | ||
Localization of Porphyromonas gingivalis-carrying fimbriae in situ in human periodontal pockets | Q64449373 | ||
A regulation cascade controls expression of Porphyromonas gingivalis fimbriae via the FimR response regulator | Q64449383 | ||
Arg-gingipain acts as a major processing enzyme for various cell surface proteins in Porphyromonas gingivalis | Q64449894 | ||
Prophyromonas gingivalis fimbriae mediate coaggregation with Streptococcus oralis through specific domains | Q64449987 | ||
Involvement of Porphyromonas gingivalis fimbriae in adherence to Streptococcus gordonii | Q64450333 | ||
Fimbriae from the oral anaerobe Bacteroides gingivalis: a screening of clinical isolates from various places | Q64451019 | ||
Genetic analyses of proteolysis, hemoglobin binding, and hemagglutination of Porphyromonas gingivalis. Construction of mutants with a combination of rgpA, rgpB, kgp, and hagA | Q77863752 | ||
Beyond the red complex and into more complexity: the polymicrobial synergy and dysbiosis (PSD) model of periodontal disease etiology. | Q34470176 | ||
Structural Dissection and In Vivo Effectiveness of a Peptide Inhibitor of Porphyromonas gingivalis Adherence to Streptococcus gordonii | Q34484719 | ||
Global burden of severe periodontitis in 1990-2010: a systematic review and meta-regression | Q34950441 | ||
Arginine deiminase system and acid adaptation of oral streptococci. | Q35187832 | ||
Update on Prevalence of Periodontitis in Adults in the United States: NHANES 2009 to 2012 | Q35701443 | ||
Porphyromonas gingivalis short fimbriae are regulated by a FimS/FimR two-component system | Q35987447 | ||
Inactivation of the Porphyromonas gingivalis fimA gene blocks periodontal damage in gnotobiotic rats | Q36105322 | ||
Evidence that Porphyromonas (Bacteroides) gingivalis fimbriae function in adhesion to Actinomyces viscosus | Q36152126 | ||
OxyR is involved in coordinate regulation of expression of fimA and sod genes in Porphyromonas gingivalis | Q36725597 | ||
Role of differential expression of streptococcal arginine deiminase in inhibition of fimA expression in Porphyromonas gingivalis | Q36747267 | ||
Arginine deiminase inhibits Porphyromonas gingivalis surface attachment | Q37006516 | ||
Regulation of hemin binding proteins by a novel transcriptional activator in Porphyromonas gingivalis | Q37033471 | ||
Microbial Degradation of Cellular Kinases Impairs Innate Immune Signaling and Paracrine TNFα Responses | Q37307064 | ||
Negative correlation of distributions of Streptococcus cristatus and Porphyromonas gingivalis in subgingival plaque | Q37451753 | ||
Breaking bad: manipulation of the host response by Porphyromonas gingivalis. | Q37586359 | ||
The global burden of periodontal disease: towards integration with chronic disease prevention and control | Q38036358 | ||
Structure of RagB, a major immunodominant outer-membrane surface receptor antigen of Porphyromonas gingivalis | Q38290280 | ||
Dancing with the Stars: How Choreographed Bacterial Interactions Dictate Nososymbiocity and Give Rise to Keystone Pathogens, Accessory Pathogens, and Pathobionts | Q38770323 | ||
Molecular Mechanisms of Two-Component Signal Transduction | Q38926318 | ||
Periodontal systemic associations: review of the evidence. | Q39427007 | ||
Streptococcus cristatus ArcA interferes with Porphyromonas gingivalis pathogenicity in mice | Q39745708 | ||
Immunization of Macaca fascicularis against experimental periodontitis using a vaccine containing cysteine proteases purified from Porphyromonas gingivalis | Q39796464 | ||
Role of fimbriae in Porphyromonas gingivalis invasion of gingival epithelial cells | Q39827239 | ||
Porphyromonas gingivalis fimbriae | Q40490134 | ||
Detection of fimbriae and fimbrial antigens on the oral anaerobe Bacteroides gingivalis by negative staining and serological methods | Q41997923 | ||
Porphyromonas gingivalis RagB is a proinflammatory signal transducer and activator of transcription 4 agonist | Q42223192 | ||
Identification of a two-component signal transduction system involved in fimbriation of Porphyromonas gingivalis | Q42627174 | ||
The role of Porphyromonas gingivalis gingipains in platelet activation and innate immune modulation | Q43683133 | ||
Complement receptor 3 blockade promotes IL-12-mediated clearance of Porphyromonas gingivalis and negates its virulence in vivo | Q43985683 | ||
Oral streptococcal glyceraldehyde-3-phosphate dehydrogenase mediates interaction with Porphyromonas gingivalis fimbriae | Q45110167 | ||
A streptococcal effector protein that inhibits Porphyromonas gingivalis biofilm development. | Q45965114 | ||
Characterization of RagA and RagB in Porphyromonas gingivalis: study using gene-deletion mutants | Q46927591 | ||
Genetic variation of Porphyromonas gingivalis genes encoding gingipains, cysteine proteinases with arginine or lysine specificity | Q48039254 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Streptococcus cristatus | Q18385809 |
Porphyromonas gingivalis | Q3214147 | ||
P304 | page(s) | 1413 | |
P577 | publication date | 2017-05-03 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Identification of Streptococcus cristatus peptides that repress expression of virulence genes in Porphyromonas gingivalis | |
P478 | volume | 7 |
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Q40126322 | How to become a killer, or is it all accidental? Virulence strategies in oral streptococci. |
Q96827661 | In vivo and ex vivo actions of a novel P. gingivalis inhibitor on multi-species biofilm, inflammatory response and periodontal bone loss |
Q89095173 | Oral microbiome development during childhood: an ecological succession influenced by postnatal factors and associated with tooth decay |
Q92471578 | Peptide and non-peptide mimetics as potential therapeutics targeting oral bacteria and oral biofilms |
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