Chen W Y, Wight D C, Wagner T E, Kopchick J J
Department of Zoology, Ohio University, Athens 45701.
Proc Natl Acad Sci U S A. 1990 Jul;87(13):5061-5. doi: 10.1073/pnas.87.13.5061.
To determine the importance of the third alpha-helix in bovine growth hormone (bGH) relative to growth-related biological activities, the following experimental approach was used: (i) mutagenesis of helix III of bGH to generate an idealized amphiphilic helix; (ii) in vitro expression analyses of the mutated bGH gene in cultured mouse L cells; (iii) mouse liver membrane binding studies of wild-type and mutated bGH; and (iv) expression of the mutated gene in the transgenic mouse. An altered bGH gene (pBGH10 delta 6-M8) was generated that encodes the following changes: glutamate-117 to leucine, glycine-119 to arginine, and alanine-122 to aspartate. The plasmid pBGH10 delta 6-M8 was shown to be expressed in, and its protein product secreted by, mouse L cells. The altered hormone possessed the same binding affinity to mouse liver membrane preparations as wild-type bGH. Transgenic mice containing the mutated bGH gene, however, showed a significant growth-suppressed phenotype. The degree of suppression was directly related to serum levels of the altered bGH molecule.
为了确定牛生长激素(bGH)中第三个α-螺旋相对于生长相关生物活性的重要性,采用了以下实验方法:(i)对bGH的螺旋III进行诱变,以产生理想化的两亲性螺旋;(ii)在培养的小鼠L细胞中对突变的bGH基因进行体外表达分析;(iii)对野生型和突变型bGH进行小鼠肝细胞膜结合研究;(iv)在转基因小鼠中表达突变基因。产生了一个改变的bGH基因(pBGH10 delta 6-M8),其编码以下变化:谷氨酸-117变为亮氨酸,甘氨酸-119变为精氨酸,丙氨酸-122变为天冬氨酸。质粒pBGH10 delta 6-M8在小鼠L细胞中表达,其蛋白质产物也由小鼠L细胞分泌。改变后的激素与野生型bGH对小鼠肝细胞膜制剂具有相同的结合亲和力。然而,含有突变bGH基因的转基因小鼠表现出明显的生长抑制表型。抑制程度与改变后的bGH分子的血清水平直接相关。