Results 91 to 100 of about 24,283,245 (285)

Crotacetin, a novel snake venom C-type lectin, is homolog of convulxin

open access: yesJournal of Venomous Animals and Toxins including Tropical Diseases, 2005
Snake venom (sv) C-type lectins encompass a group of hemorrhagic toxins, which are able to interfere with hemostasis. They share significant similarity in their primary structures with C-type lectins of other animals, and also present a conserved ...
G. Rádis-Baptista   +8 more
doaj   +1 more source

C-type lectins in immunity to Mycobacterium tuberculosis

open access: yesFrontiers in Bioscience, 2011
Tuberculosis (TB) remains one of the leading causes of death due to a single infectious agent, Mycobacterium tuberculosis, with nearly 2 million deaths per year (1). Most individuals exposed to the bacillus develop a nonpathological form, latent TB, with only a small minority (5 to 10%) developing active disease.
Antoine, Tanne, Olivier, Neyrolles
openaire   +2 more sources

Modulation of Animal Gut Health by Milk Oligosaccharide

open access: yesAnimal Research and One Health, EarlyView.
This review summarizes the composition and structural characteristics of MOs across different mammalian species, and elucidates their roles and mechanisms in maintaining intestinal homeostasis by regulating gut microbiome and enhancing intestinal chemical, physical and immune barriers.
Ningtao Chen   +7 more
wiley   +1 more source

C-Type Lectin Receptors

open access: yes, 2016
C-type lectins, originally defined as proteins binding carbohydrates in a Ca(2+)-dependent manner, form a large family containing soluble and membrane-bound proteins. Among them, those expressed on phagocytes and working as pathogen pattern-recognition receptors were designated as C-type lectin receptors (CLRs), in accordance with Toll-like receptors ...
openaire   +1 more source

The C‐type lectin‐like domain superfamily

open access: yesThe FEBS Journal, 2005
The superfamily of proteins containing C‐type lectin‐like domains (CTLDs) is a large group of extracellular Metazoan proteins with diverse functions. The CTLD structure has a characteristic double‐loop (‘loop‐in‐a‐loop’) stabilized by two highly conserved disulfide bridges located at the bases of the loops, as well as a set of conserved hydrophobic and
Zelensky, Alex, Gready, Jill
openaire   +3 more sources

Domain and phylogenetic analysis of 105 C-type lectins identified in M.separata, using DoMosaics.

open access: yes, 2022
 Domain and phylogenetic analysis of 105 C-type lectins identified in M.separata, using DoMosaics. CTL_tree_domain.jpg is the CTL tree developed using DoMosaics. C_type_lectin_ID.txt shows the ID of C-type lectin genes in M.
Kakeru Yokoi (5627273)
core   +1 more source

Cumulative Reproductive‐Lactation Burdens Induce a Systemic Immunometabolic Trade‐Off Between Milk Yield and Mammary Health of Dairy Cows

open access: yesAnimal Research and One Health, EarlyView.
A population‐scale longitudinal transcriptomic atlas reveals how lactation stage and parity reshape systemic gene regulation in dairy cows. Multiomics‐inspired analyses uncover dynamic immune and metabolic adaptations that contribute to reproductive longevity and sustained productivity across the bovine lifespan.
Yangyang Shen   +8 more
wiley   +1 more source

Syk-coupled C-type lectins in immunity

open access: yesTrends in Immunology, 2011
The Syk-coupled C-type lectin receptor Dectin-1 was the first non-Toll like receptor described that could mediate its own intracellular signalling. It was initially identified as important for the innate recognition of and response to fungal pathogens but later studies revealed that it is also involved in triggering adaptive immune responses.
Kerrigan, Ann M., Brown, Gordon D.
openaire   +2 more sources

An evolutionary perspective on C-type lectins in infection and immunity

open access: yes, 2012
Host-pathogen interactions have coevolved formany years. On the one hand, the human immune system consists of innate and adaptive immune cells that function to defeat pathogens, and on the other hand, pathogens have coevolved to use the system for their ...
Linda M. van den Berg   +5 more
core   +1 more source

Identifying Systemic Lupus Erythematosus From Serum Proteomic Profiles Using Machine Learning and Genetic Risk Stratification

open access: yesArthritis &Rheumatology, EarlyView.
Objective Proteome‐wide risk models for lupus remain underexplored. We developed classification models to identify lupus from serum proteomic profiles. Methods Patients with lupus and individuals with other autoimmune diseases in the UK Biobank were included.
Mehmet Hocaoǧlu   +2 more
wiley   +1 more source

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