Roth P E, Kurtz B, Lo D, Storb U
Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637.
J Exp Med. 1995 Mar 1;181(3):1059-70. doi: 10.1084/jem.181.3.1059.
gamma 2b transgenic mice have a severe B cell defect, apparently caused by strong feedback inhibition of endogenous H-gene rearrangement coupled with an inability of gamma 2b to provide the survival/maturation functions of mu. A unique gamma 2b transgenic line, named the C line, was found to permit B cell development. When the C line is crossed with a mu-membrane knockout line, gamma 2b+ B cells develop in the homozygous knockout. In contrast, a transgenic line representative of all the other gamma 2b lines is completely B cell deficient when mu-mem is deleted. Strikingly, the C phenotype is dominant in C x other gamma 2b transgenic line crosses. There is no evidence for higher gamma 2b transgene expression or other position effects on the transgene in the C mouse. The sequences of the three gamma 2b transgene copies in the C line are identical to that of the original transgene. These results have led to the conclusion that in the C line the transgene integration constitutively induces a gene whose expression can replace mu. To more clearly delineate the stage at which the altered phenotype of the C line is expressed, C mice were crossed onto a lambda 5 knockout background. In the absence of lambda 5, the C line produces no B cells. Since it was also found that gamma 2b can associate with the surrogate light chain (sL; lambda 5/Vpre-B), the crosses between C line gamma 2b mice and lambda 5 knockout mice suggest that gamma 2b/sL is required for B cell maturation in this mouse line. Thus, gamma 2b alone is unable to replace mu for pre-B cell survival/maturation; however, in combination with an unknown factor and the sL, gamma 2b can provide these nurturing functions.
γ2b转基因小鼠存在严重的B细胞缺陷,这显然是由内源性H基因重排的强烈反馈抑制以及γ2b无法提供μ的存活/成熟功能所致。发现了一个独特的γ2b转基因品系,命名为C系,其能允许B细胞发育。当C系与μ膜敲除品系杂交时,纯合敲除小鼠中会发育出γ2b+B细胞。相比之下,代表所有其他γ2b品系的一个转基因品系在μ膜缺失时完全缺乏B细胞。引人注目的是,C系表型在C系与其他γ2b转基因品系的杂交中占主导地位。没有证据表明C小鼠中γ2b转基因表达更高或转基因存在其他位置效应。C系中三个γ2b转基因拷贝的序列与原始转基因的序列相同。这些结果得出结论,在C系中,转基因整合组成性地诱导了一个基因,其表达可以替代μ。为了更清楚地描绘C系改变的表型表达的阶段,将C小鼠与λ5敲除背景杂交。在没有λ5的情况下,C系不产生B细胞。由于还发现γ2b可以与替代轻链(sL;λ5/Vpre-B)结合,C系γ2b小鼠与λ5敲除小鼠之间的杂交表明,γ2b/sL是该小鼠系中B细胞成熟所必需的。因此,单独的γ2b无法替代μ来维持前B细胞的存活/成熟;然而,与一个未知因子和sL结合时,γ2b可以提供这些滋养功能。