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January 1, 2002Journal of Clinical Investigation812 citationsOpen Access

Association of BAFF/BLyS overexpression and altered B cell differentiation with Sjögren’s syndrome

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JGJoanna R. GroomSKSusan L. KalledACAnne H. Cutler

Key Points

  • The study aims to explore the relationship between BAFF overexpression and B cell differentiation in Sjögren's syndrome.
  • Utilized transgenic mice overexpressing BAFF to evaluate autoimmune characteristics.
  • Analyzed the effects of BAFF on B cell development and survival in the spleen.
  • Examined inflammation and tissue damage in salivary glands.
  • BAFF Tg mice developed severe sialadenitis with a significant reduction in saliva production.
  • Elevated BAFF levels correlated with altered B cell differentiation and increased autoreactive B cells.
  • MZ B cells infiltrated the salivary glands, indicating a potential role in autoimmune tissue damage.

Abstract

BAFF (BLyS, TALL-1, THANK, zTNF4) is a member of the TNF superfamily that specifically regulates B lymphocyte proliferation and survival. Mice transgenic (Tg) for BAFF develop an autoimmune condition similar to systemic lupus erythematosus. We now demonstrate that BAFF Tg mice, as they age, develop a secondary pathology reminiscent of Sjögren's syndrome (SS), which is manifested by severe sialadenitis, decreased saliva production, and destruction of submaxillary glands. In humans, SS also correlates with elevated levels of circulating BAFF, as well as a dramatic upregulation of BAFF expression in inflamed salivary glands. A likely explanation for disease in BAFF Tg mice is excessive survival signals to autoreactive B cells, possibly as they pass through a critical tolerance checkpoint while maturing in the spleen. The marginal zone (MZ) B cell compartment, one of the enlarged B cell subsets in the spleen of BAFF Tg mice, is a potential reservoir of autoreactive B cells. Interestingly, B cells with an MZ-like phenotype infiltrate the salivary glands of BAFF Tg mice, suggesting that cells of this compartment potentially participate in tissue damage in SS and possibly other autoimmune diseases. We conclude that altered B cell differentiation and tolerance induced by excess BAFF may be central to SS pathogenesis.

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Cite This Study

Groom et al. (2002) studied this question.

synapsesocial.com/papers/6a012fdc2ff633f365784467https://doi.org/10.1172/jci14121
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