Department of Chemical and Biomolecular Engineering, The Johns Hopkins University, 3400 North Charles Street, 221 Maryland Hall, Baltimore, MD 21218-2694, USA.
Protein Eng Des Sel. 2012 Jan;25(1):27-38. doi: 10.1093/protein/gzr052. Epub 2011 Dec 9.
Recently, researchers have created novel fluorescent proteins by harnessing the somatic hypermutation ability of B cells. In this study, we examined if this approach could be used to evolve a non-fluorescent protein, namely the anti-apoptosis protein Bcl-x(L), using the Ramos B-cell line. After demonstrating that Ramos cells were capable of mutating a heterologous bcl-x(L) transgene, the cells were exposed to multiple rounds of the chemical apoptosis inducer staurosporine followed by rounds of recovery in fresh medium. The engineered B cells expressing Bcl-x(L) exhibited progressively lower increases in apoptosis activation as measured by caspase-3 activity after successive rounds of selective pressure with staurosporine treatment. Within the B-cell genome, a number of mutated bcl-x(L) transgene variants were identified after three rounds of evolution, including a mutation of Bcl-x(L) Asp29 to either Asn or His, in 8 out of 23 evaluated constructs that represented at least five distinct Ramos subpopulations. Subsequently, Chinese hamster ovary (CHO) cells engineered to overexpress the Bcl-x(L) Asp29Asn variant showed enhanced apoptosis resistance against an orthogonal apoptosis insult, Sindbis virus infection, when compared with cells expressing the wild-type Bcl-x(L) protein. These findings provide, to our knowledge, the first demonstration of evolution of a recombinant mammalian protein in a mammalian expression system.
最近,研究人员利用 B 细胞的体细胞超突变能力创造了新型荧光蛋白。在这项研究中,我们研究了这种方法是否可以用于进化一种非荧光蛋白,即抗凋亡蛋白 Bcl-x(L),使用 Ramos B 细胞系。在证明 Ramos 细胞能够突变异源 bcl-x(L)转基因后,用化学凋亡诱导剂星形孢菌素处理细胞,然后在新鲜培养基中进行多轮恢复。表达 Bcl-x(L)的工程化 B 细胞在经过多轮星形孢菌素处理的选择性压力后, caspase-3 活性测量的凋亡激活逐渐降低。在 B 细胞基因组中,在经过三轮进化后,在 23 个评估构建体中的 8 个中鉴定出了许多突变的 bcl-x(L)转基因变体,其中包括 Bcl-x(L) Asp29 突变为天冬酰胺或组氨酸,这些构建体代表了至少五个不同的 Ramos 亚群。随后,工程化 CHO 细胞过表达 Bcl-x(L) Asp29Asn 变体,与表达野生型 Bcl-x(L)蛋白的细胞相比,对正交凋亡刺激辛德比斯病毒感染表现出增强的抗凋亡能力。这些发现提供了,据我们所知,在哺乳动物表达系统中首次证明了重组哺乳动物蛋白的进化。