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Copper (Cu) is one of the most abundant trace metals in all organisms, involved in a plethora of cellular processes. Yet elevated concentrations of the element are harmful, and interestingly prokaryotes are more sensitive for environmental Cu stress than humans. Various transport systems are present to maintain intracellular Cu homeostasis, including the prokaryotic plasmid-encoded multiprotein pco operon, which is generally assigned as a defense mechanism against elevated Cu concentrations. Here we structurally and functionally characterize the outer membrane component of the Pco system, PcoB, recovering a 2.0 Å structure, revealing a classical β-barrel architecture. Unexpectedly, we identify a large opening on the extracellular side, linked to a considerably electronegative funnel that becomes narrower towards the periplasm, defining an ion-conducting pathway as also supported by metal binding quantification via inductively coupled plasma mass spectrometry and molecular dynamics (MD) simulations. However, the structure is partially obstructed towards the periplasmic side, and yet flux is permitted in the presence of a Cu gradient as shown by functional characterization in vitro. Complementary in vivo experiments demonstrate that isolated PcoB confers increased sensitivity towards Cu. Aggregated, our findings indicate that PcoB serves to permit Cu import. Thus, it is possible the Pco system physiologically accumulates Cu in the periplasm as a part of an unorthodox defense mechanism against metal stress. These results point to a previously unrecognized principle of maintaining Cu homeostasis and may as such also assist in the understanding and in efforts towards combatting bacterial infections of Pco-harboring pathogens.
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http://dx.doi.org/10.1002/pro.4364 | DOI Listing |
J Extracell Vesicles
September 2025
IRSD, Université de Toulouse, INSERM, INRAE, ENVT, Toulouse, France.
Outer membrane vesicles (OMVs) are nanosized vesicles naturally secreted by Gram-negative bacteria and represent a promising platform for vaccine development. OMVs possess inherent immunostimulatory properties due to the presence of pathogen-associated molecular patterns (PAMPs), providing self-adjuvanting capabilities and the ability to elicit both innate and adaptive immune responses. This review outlines the advantages of OMVs over traditional vaccine strategies, including their safety, modularity, and the potential for genetic engineering to enable targeted antigen delivery.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
September 2025
University of Health Science, Haseki Training and Research Hospital, Department of Ophthalmology, Istanbul, Turkey.
Purpose: The purpose of this study was to assess the reflectivity of the outer retinal layers (ORLs) in patients with central serous chorioretinopathy (CSCR) and to examine the relationship between the dimensions of the subretinal fluid (SRF) and ORL.
Methods: This retrospective, cross-sectional study included 33 eyes of 33 patients with CSCR and 33 age- and gender-matched controls. Unnormalized and relative reflectivities for the retinal pigment epithelium (RPE), the external limiting membrane (ELM), and the ellipsoid zone (EZ), as well as SRF height, base width, and area, were measured on optical coherence tomography images.
Hum Vaccin Immunother
December 2025
Merck & Co. Inc., Rahway, NJ, USA.
Invasive disease caused by type b (Hib) is a major health concern, particularly in children under 5 years of age and vulnerable populations. Use of Hib conjugate vaccines has significantly reduced the incidence of Hib disease. Among these, the polyribosylribitol phosphate-outer membrane protein complex (PRP-OMPC) conjugate has demonstrated uniquely robust immunogenicity in infants compared to PRP conjugated to tetanus toxoid.
View Article and Find Full Text PDFFront Mol Neurosci
August 2025
Department of Cardiovascular Sciences, Lewis Katz School of Medicine, Lemole Center for Integrated Lymphatics and Vascular Research, Temple University, Philadelphia, PA, United States.
Introduction: Endothelial-to-mesenchymal transition (EndoMT), cell death, and fibrosis are increasingly recognized as contributing factors to Alzheimer's disease (AD) pathology, but the underlying transcriptomic mechanisms remain poorly defined. This study aims to elucidate transcriptomic changes associated with EndoMT, diverse cell death pathways, and fibrosis in AD using the 3xTg-AD mouse model.
Methods: Using RNA-seq data and knowledge-based transcriptomic analysis on brain tissues from the 3xTg-AD mouse model of AD.
In Silico Pharmacol
September 2025
Institute of Bioresources and Sustainable Development, Takyelpat, Imphal, 795001 Manipur India.
Abstract: The rise of multidrug-resistant poses significant challenges in hospital settings. This study evaluates the antimicrobial potential of the aqueous extract of (AETC) against strain AB0014, isolated from a preterm neonate presenting sepsis. The minimum inhibitory concentration (MIC) was determined using the microdilution method.
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