Schulze D H, Pease L R, Geier S S, Reyes A A, Sarmiento L A, Wallace R B, Nathenson S G
Proc Natl Acad Sci U S A. 1983 Apr;80(7):2007-11. doi: 10.1073/pnas.80.7.2007.
The gene for the H-2K class I antigen of the bm1 variant was cloned and analyzed at the DNA level and compared with the previously cloned parent B6/Kh gene. Sequence determination and comparative restriction endonuclease studies indicate that Kbm1 is derived from the Kb gene. Seven nucleotide changes within a 13-nucleotide stretch distinguish the mutant from the parent gene and result in amino acid differences at positions 152, 155, and 156 in the antigen. The data confirm previously reported changes at amino acid positions 155 and 156 (arginine to tyrosine and leucine to tyrosine, respectively) and extend the altered region to include two nucleotides encoding a glutamate to alanine substitution at amino acid 152, a change not detected by the protein studies because of limitations of the methods used. The DNA sequence encoding this region of the Kbm1 glycoprotein is identical to the DNA sequence of at least one other known class I gene in the mouse, a finding consistent with the hypothesis that the mutation was not a random event but may be the result of a block transfer of information by a copy mechanism analogous to gene conversion. As the sequence analysis of the coding region for the first 273 amino acid residues shows identity between parent and mutant except for the seven nucleotide changes, all variant-parent functional differences must depend only on the cluster of three amino acid differences in the second domain of the Kb glycoprotein.
克隆了bm1变体的H-2K I类抗原基因,并在DNA水平进行分析,与先前克隆的亲本B6/Kh基因进行比较。序列测定和限制性内切酶比较研究表明,Kbm1源自Kb基因。在13个核苷酸的片段中有7个核苷酸变化,使突变体与亲本基因区分开来,并导致抗原中第152、155和156位氨基酸的差异。这些数据证实了先前报道的第155和156位氨基酸的变化(分别由精氨酸变为酪氨酸和由亮氨酸变为酪氨酸),并将改变的区域扩展到包括编码第152位氨基酸由谷氨酸变为丙氨酸的两个核苷酸,由于所用方法的局限性,蛋白质研究未检测到这一变化。编码Kbm1糖蛋白该区域的DNA序列与小鼠中至少一个其他已知的I类基因的DNA序列相同,这一发现与以下假设一致,即该突变不是随机事件,而可能是通过类似于基因转换的复制机制进行信息块转移的结果。由于对前273个氨基酸残基编码区域的序列分析表明,除了7个核苷酸变化外,亲本和突变体之间具有同一性,所有变体-亲本功能差异必定仅取决于Kb糖蛋白第二个结构域中三个氨基酸差异的簇。