Journal of Biomedicine and Biotechnology · 2012 · 27 citations · 53 references
Mannose‑binding lectin is a soluble innate immune pattern‑recognition protein that binds diverse ligands such as viruses, bacteria, and abnormal self‑tissues and also contributes to tissue homeostasis. The study shows that MBL binds amyloid β peptides via a cysteine‑rich domain similar to the mannose receptor, suggesting that ligand‑binding differences may modulate inflammation and influence coagulation and tissue‑homeostasis processes.
Mannose-binding lectin (MBL), a soluble factor of the innate immune system, is a pattern recognition molecule with a number of known ligands, including viruses, bacteria, and molecules from abnormal self tissues. In addition to its role in immunity, MBL also functions in the maintenance of tissue homeostasis. We present evidence here that MBL binds to amyloid β peptides. MBL binding to other known carbohydrate ligands is calcium-dependent and has been attributed to the carbohydrate-recognition domain, a common feature of other C-type lectins. In contrast, we find that the features of MBL binding to A β are more similar to the reported binding characteristics of the cysteine-rich domain of the unrelated mannose receptor and therefore may involve the MBL cysteine-rich domain. Differences in MBL ligand binding may contribute to modulation of inflammatory response and may correlate with the function of MBL in processes such as coagulation and tissue homeostasis.
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Decreased Clearance of CNS β-Amyloid in Alzheimer’s Disease
Kwasi G. Mawuenyega, Wendy Sigurdson, Vitaliy Ovod et al. · Science · 2010 · 2K citations · Full text
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