Program in Cellular and Molecular Medicine, Boston Children's Hospital, Boston, MA 02115;
Department of Genetics, Harvard Medical School, Boston, MA 02115.
Proc Natl Acad Sci U S A. 2020 Apr 7;117(14):7929-7940. doi: 10.1073/pnas.1921996117. Epub 2020 Mar 24.
HIV-1 vaccine development aims to elicit broadly neutralizing antibodies (bnAbs) against diverse viral strains. In some HIV-1-infected individuals, bnAbs evolved from precursor antibodies through affinity maturation. To induce bnAbs, a vaccine must mediate a similar antibody maturation process. One way to test a vaccine is to immunize mouse models that express human bnAb precursors and assess whether the vaccine can convert precursor antibodies into bnAbs. A major problem with such mouse models is that bnAb expression often hinders B cell development. Such developmental blocks may be attributed to the unusual properties of bnAb variable regions, such as poly-reactivity and long antigen-binding loops, which are usually under negative selection during primary B cell development. To address this problem, we devised a method to circumvent such B cell developmental blocks by expressing bnAbs conditionally in mature B cells. We validated this method by expressing the unmutated common ancestor (UCA) of the human VRC26 bnAb in transgenic mice. Constitutive expression of the VRC26UCA led to developmental arrest of B cell progenitors in bone marrow; poly-reactivity of the VRC26UCA and poor pairing of the VRC26UCA heavy chain with the mouse surrogate light chain may contribute to this phenotype. The conditional expression strategy bypassed the impediment to VRC26UCA B cell development, enabling the expression of VRC26UCA in mature B cells. This approach should be generally applicable for expressing other bnAbs that are under negative selection during B cell development.
HIV-1 疫苗的研发旨在诱导针对多种病毒株的广谱中和抗体(bnAbs)。在一些 HIV-1 感染者中,bnAbs 由前体抗体通过亲和力成熟而进化而来。为了诱导 bnAbs,疫苗必须介导类似的抗体成熟过程。一种测试疫苗的方法是免疫表达人类 bnAb 前体的小鼠模型,并评估疫苗是否可以将前体抗体转化为 bnAbs。此类小鼠模型的一个主要问题是,bnAb 的表达常常阻碍 B 细胞的发育。这种发育障碍可能归因于 bnAb 可变区的异常特性,例如多反应性和长抗原结合环,这些特性通常在初级 B 细胞发育过程中受到负选择。为了解决这个问题,我们设计了一种方法,通过在成熟 B 细胞中条件性表达 bnAbs 来规避这种 B 细胞发育障碍。我们通过在转基因小鼠中表达人类 VRC26 bnAb 的未突变共同祖先 (UCA) 来验证这种方法。VRC26UCA 的组成型表达导致骨髓中 B 细胞前体的发育停滞;VRC26UCA 的多反应性和 VRC26UCA 重链与小鼠替代轻链的配对不良可能导致这种表型。条件表达策略绕过了 VRC26UCA B 细胞发育的障碍,使 VRC26UCA 能够在成熟 B 细胞中表达。这种方法应该普遍适用于表达在 B 细胞发育过程中受到负选择的其他 bnAbs。