bioRxiv ScienceSearch

Biology subjects

Nitschke, L.

Publications and source records attributed to Nitschke, L..

2 recordsLinked to original sources

Selective augmentation of intestinal immunity by CD22-dependent SHP-1 control of β7 integrin expression.

The regulation of integrin expression and function controls interactions of immune cells and targets their trafficking locally and systemically. We show here that the tyrosine phosphatase SHP-1 is required for lymphocyte surface expression of the intestinal immune response-associated integrin {beta}7, but not for {beta}1 or {beta}2 integrins. Viable motheaten mice deficient for SHP-1 have less {beta}7 on T cells and lack {beta}7 on B cells. SHP-1 function is targeted in B cells by the B cell specific lectin CD22 (Siglec-2), suggesting a potential role for CD22 in {beta}7 expression. CD22-deficiency on B cells phenocopies the effects of SHP-1 haplodeficiency. Mechanistically, we show that SHP-1 suppresses {beta}7 endocytosis: internalization of {beta}7 but not {beta}1 integrin is accelerated in SHP-1+/- and CD22-/- B cells. Moreover, mutations in CD22 cytoplasmic SHP1-binding ITIM sequences reduce 4{beta}7 comparably, and loss of CD22 lectin activity has an intermediate effect suggesting a model in which the CD22 ITIM sequences recruit SHP-1 to control {beta}7 expression. Integrin 4{beta}7 selectively contributes to cell interactions in intestinal immunity. Consistent with this, CD22 deficient and SHP-1+/- B cells display reduced {beta}7-dependent homing to gut associated Peyers patches (PP); and CD22-deficiency impairs intestinal but not systemic antibody responses and delays clearance of the gut pathogen rotavirus. The results define a novel role for SHP-1 in the differential control of leukocyte integrins and an unexpected integrin {beta}7-specific role for CD22-SHP-1 interplay in mucosal immunity.

immunology

Intravital quantification of absolute cytoplasmic B cell calcium reveals dynamic signaling across B cell differentiation stages

Development, function and maintenance of lymphocytes largely depend upon the cellular mobilization and storage of Ca2+ ions. In B lymphocytes, the absolute amount of calcium mobilized and retained after cell signaling remains unknown, athough it is a crucial part of their selection within germinal centers and differentiation into plasma cells. Here, we introduce the novel reporter mouse strain YellowCaB that expresses the genetically encoded calcium indicator TN-XXL in CD19+ lymphocytes. The construct consists of the electrondonor fluorophore eCFP and the acceptor citrine, linked by a calcium sensitive domain. Its conformation and therefore donor quenching is directly linked to cytosolic calcium concentrations. By combining intravital two-photon fluorescence lifetime microscopy with our numerical approach for phasor-based analysis, we are able to extract absolute cytoplasmic calcium concentrations in activated B cells for the first time in vivo. We show that calcium concentrations in B cells are highly dynamic and fluctuations persist in extrafollicular B cells with functional relevance.

immunology