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A genetic lesion that arrests plasma cell homing to the bone marrow.


ABSTRACT: The coordinated regulation of chemokine responsiveness plays a critical role in the development of humoral immunity. After antigen challenge and B cell activation, the emerging plasma cells (PCs) undergo CXCL12-induced chemotaxis to the bone marrow, where they produce Ab and persist. Here we show that PCs, but not B cells or T cells from lupus-prone NZM mice, are deficient in CXCL12-induced migration. PC unresponsiveness to CXCL12 results in a marked accumulation of PCs in the spleen of mice, and a concordant decrease in bone marrow PCs. Unlike normal mice, in NZM mice, a majority of the splenic PCs are long-lived. This deficiency is a consequence of the genetic interactions of multiple systemic lupus erythematosus susceptibility loci.

SUBMITTER: Erickson LD 

PROVIDER: S-EPMC240717 | biostudies-literature | 2003 Oct

REPOSITORIES: biostudies-literature

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A genetic lesion that arrests plasma cell homing to the bone marrow.

Erickson Loren D LD   Lin Ling-Li LL   Duan Biyan B   Morel Laurence L   Noelle Randolph J RJ  

Proceedings of the National Academy of Sciences of the United States of America 20031010 22


The coordinated regulation of chemokine responsiveness plays a critical role in the development of humoral immunity. After antigen challenge and B cell activation, the emerging plasma cells (PCs) undergo CXCL12-induced chemotaxis to the bone marrow, where they produce Ab and persist. Here we show that PCs, but not B cells or T cells from lupus-prone NZM mice, are deficient in CXCL12-induced migration. PC unresponsiveness to CXCL12 results in a marked accumulation of PCs in the spleen of mice, an  ...[more]

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