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1.
J Clin Microbiol ; 58(12)2020 11 18.
Artículo en Inglés | MEDLINE | ID: mdl-32917729

RESUMEN

The development of neutralizing antibodies (NAbs) against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) following infection or vaccination is likely to be critical for the development of sufficient population immunity to drive cessation of the coronavirus disease of 2019 (COVID-19) pandemic. A large number of serologic tests, platforms, and methodologies are being employed to determine seroprevalence in populations to select convalescent plasma samples for therapeutic trials and to guide policies about reopening. However, the tests have substantial variations in sensitivity and specificity, and their ability to quantitatively predict levels of NAbs is unknown. We collected 370 unique donors enrolled in the New York Blood Center Convalescent Plasma Program between April and May of 2020. We measured levels of antibodies in convalescent plasma samples using commercially available SARS-CoV-2 detection tests and in-house enzyme-linked immunosorbent assays (ELISAs) and correlated serological measurements with NAb activity measured using pseudotyped virus particles, which offer the most informative assessment of antiviral activity of patient sera against viral infection. Our data show that a large proportion of convalescent plasma samples have modest antibody levels and that commercially available tests have various degrees of accuracy in predicting NAb activity. We found that the Ortho anti-SARS-CoV-2 total Ig and IgG high-throughput serological assays (HTSAs) and the Abbott SARS-CoV-2 IgG assay quantify levels of antibodies that strongly correlate with the results of NAb assays and are consistent with gold standard ELISA results. These findings provide immediate clinical relevance to serology results that can be equated to NAb activity and could serve as a valuable roadmap to guide the choice and interpretation of serological tests for SARS-CoV-2.


Asunto(s)
Anticuerpos Neutralizantes/inmunología , Anticuerpos Antivirales/inmunología , Variación Biológica Poblacional , COVID-19/epidemiología , COVID-19/inmunología , SARS-CoV-2/inmunología , Pruebas Serológicas , Anticuerpos Neutralizantes/sangre , Anticuerpos Antivirales/sangre , COVID-19/diagnóstico , COVID-19/virología , Línea Celular , Ensayo de Inmunoadsorción Enzimática , Ensayos Analíticos de Alto Rendimiento , Humanos , Inmunofenotipificación , Leucocitos Mononucleares , Vigilancia de la Población , Sensibilidad y Especificidad , Estudios Seroepidemiológicos , Serogrupo , Pruebas Serológicas/métodos , Estados Unidos/epidemiología
2.
Mol Microbiol ; 112(4): 1100-1115, 2019 10.
Artículo en Inglés | MEDLINE | ID: mdl-31286580

RESUMEN

The cell wall is a crucial structural feature in the vast majority of bacteria and comprises a covalently closed network of peptidoglycan (PG) strands. While PG synthesis is important for survival under many conditions, the cell wall is also a dynamic structure, undergoing degradation and remodeling by 'autolysins', enzymes that break down PG. Cell division, for example, requires extensive PG remodeling, especially during separation of daughter cells, which depends heavily upon the activity of amidases. However, in Vibrio cholerae, we demonstrate that amidase activity alone is insufficient for daughter cell separation and that lytic transglycosylases RlpA and MltC both contribute to this process. MltC and RlpA both localize to the septum and are functionally redundant under normal laboratory conditions; however, only RlpA can support normal cell separation in low-salt media. The division-specific activity of lytic transglycosylases has implications for the local structure of septal PG, suggesting that there may be glycan bridges between daughter cells that cannot be resolved by amidases. We propose that lytic transglycosylases at the septum cleave PG strands that are crosslinked beyond the reach of the highly regulated activity of the amidase and clear PG debris that may block the completion of outer membrane invagination.


Asunto(s)
Pared Celular/metabolismo , Peptidoglicano Glicosiltransferasa/metabolismo , Peptidoglicano/metabolismo , Amidohidrolasas/metabolismo , Proteínas Bacterianas/metabolismo , División Celular/fisiología , Citocinesis , Escherichia coli/metabolismo , Proteínas de Escherichia coli/metabolismo , Glicosiltransferasas/metabolismo , Lipoproteínas/metabolismo , N-Acetil Muramoil-L-Alanina Amidasa/metabolismo , Peptidoglicano Glicosiltransferasa/fisiología , Vibrio cholerae/metabolismo
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