Roth P E, Doglio L, Manz J T, Kim J Y, Lo D, Storb U
Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637.
J Exp Med. 1993 Dec 1;178(6):2007-21. doi: 10.1084/jem.178.6.2007.
Transgenic mice with a gamma 2b transgene were produced to investigate whether gamma 2b can replace mu in the development of B lymphocytes. Transgenic gamma 2b is present on the surface of B cells. Young transgenic mice have a dramatic decrease in B cell numbers, however, older mice have almost normal B cell numbers. Strikingly, all gamma 2b-expressing B cells in the spleen also express mu. The same is true for mice with a hybrid transgene in which the mu transmembrane and intracytoplasmic sequences replace those of gamma 2b (gamma 2b-mumem). The B cell defect is not due to toxicity of gamma 2b since crosses between gamma 2b transgenic and mu transgenic mice have normal numbers of B cells. Presence of the gamma 2b transgene strongly enhances the feedback inhibition of endogenous heavy chain gene rearrangement. Light chain genes are expressed normally, and the early expression of transgenic light chains does not improve B cell maturation. When the endogenous mu locus is inactivated, B cells do not develop at all in gamma 2b transgenic mice. The data suggest that gamma 2b cannot replace mu in promoting the developmental maturation of B cells, but that it can cause feedback inhibition of heavy chain gene rearrangement. Thus, the signals for heavy chain feedback and B cell maturation appear to be different.
为了研究γ2b是否能在B淋巴细胞发育过程中替代μ链,制备了带有γ2b转基因的转基因小鼠。转基因γ2b存在于B细胞表面。年轻的转基因小鼠B细胞数量显著减少,然而,老年小鼠的B细胞数量几乎正常。引人注目的是,脾脏中所有表达γ2b的B细胞也表达μ链。对于带有杂交转基因(其中μ链跨膜和胞质序列取代γ2b的相应序列,即γ2b-μmem)的小鼠也是如此。B细胞缺陷并非由于γ2b的毒性,因为γ2b转基因小鼠与μ转基因小鼠杂交后B细胞数量正常。γ2b转基因的存在强烈增强了对内源重链基因重排的反馈抑制。轻链基因正常表达,转基因轻链的早期表达并不能改善B细胞成熟。当内源性μ基因座失活时,γ2b转基因小鼠中的B细胞根本无法发育。数据表明,γ2b在促进B细胞发育成熟方面不能替代μ链,但它可导致重链基因重排的反馈抑制。因此,重链反馈信号和B细胞成熟信号似乎不同。