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Self inhibition of phagocytosis: the affinity of ‘Marker of Self’ CD47 for SIRPα dictates potency of inhibition but only at low expression levels

机译:吞噬作用的抑制自:CD47自我的标记的抑制的sIRpα使然效力但仅在低表达水平的亲和力

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摘要

Phagocytes engulf foreign cells but not ‘self’ in part because self cells express CD47 as a ligand for signal regulatory protein SIRPα, which inhibits phagocytosis. Motivated by reports of upregulation of CD47 on both normal and cancerous stem cells [] and also by polymorphisms in SIRPα [], we show here that inhibition of engulfment correlates with affinity of CD47 for SIRPα – but only at low levels of CD47. One common human polymorph of SIRPα is studied and binds more strongly to human-CD47 than to mouse-CD47 (Kd ≈ 0.12 μM and 6.9 μM, respectively) and does not bind sheep red blood cells (RBC) – which are well-established targets of human macrophages; in comparison, a common mouse polymorph of SIRPα binds with similar affinity to human and mouse CD47 (Kd ≈ 0.22 μM). Using immunoglobulin (IgG)-opsonized particles with varying levels of either human- or mouse-CD47, the effective inhibition constants Ki for blocking phagocytosis are then determined with both human- and mouse-derived macrophages. Only human phagocytes show significant differences in man versus mouse Ki's and only at CD47 levels below normal densities for RBCs. While phospo-signaling through human-SIRPα shows similar trends, consistent again with the affinity differences, saturating levels of CD47 (> Ki) can signal and inhibit phagocytosis regardless of man versus mouse. Quantitative analyses here prompt more complete characterizations of both CD47 levels and SIRPα polymorphisms when attempting to study in vivo effects of these key proteins in innate immunity.

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