Significance of RGS13 expression in lupus B cells
Abstract
Objectives B cells play important roles in systemic lupus erythematosus (SLE) pathogenesis. In this study, we explored the proteins preferentially expressed in SLE B cells, especially double-negative 2 B (DN2B) and age-associated B cells (ABCs), and analysed their functions. Methods We used our previously reported dataset to identify the mRNAs preferentially expressed in SLE B cells and confirmed their expression in each B cell subset via flow cytometry. Additionally, we also used knockout mice of the identified gene to investigate its roles. Results Of the 525 mRNAs exclusively upregulated in SLE B cells, regulator of G protein signalling ( RGS )- 13 was identified as a top-ten gene of interest. Its expression levels were determined via quantitative polymerase chain reaction and correlated with the anti-dsDNA antibody levels. Flow cytometry revealed that RGS13 levels were particularly high in DN2B cells. Among the DN2B cell differentiation-inducing factors, B cell receptor stimulation induced RGS13 expression. Total B cell, follicular B cell, and ABC numbers were reduced in the spleen, whereas the number of germinal centre B cells, which also highly express Rgs13, was unaffected in Rgs13 −/− mice. Moreover, total B cell number increased in the bone marrow but remained unchanged in the peripheral blood in Rgs13 −/− mice. No difference in responsiveness to ABC-inducing stimuli was observed between the Rgs13 −/− and wild-type mice. Conclusion Overall, RGS13 was highly expressed in lupus DN2B cells and mouse ABCs, induced by B cell receptor stimulation, and indirectly associated with the differentiation and maintenance of ABCs relevant to autoimmunity.
Article Details
Authors (10)
Tomoya Nakajima
Koji Kitagori
Sohei Funakoshi
Mirei Shirakashi
Ryosuke Hiwa
Hideaki Tsuji
Shuji Akizuki
Ran Nakashima
Akio Morinobu
Hajime Yoshifuji