首页> 外文OA文献 >SPECIFIC IMMUNE RESPONSE GENES OF THE GUINEA PIG : II. RELATIONSHIP BETWEEN THE POLY-L-LYSINE GENE AND THE GENES CONTROLLING IMMUNE RESPONSIVENESS TO COPOLYMERS OF L-GLUTAMIC ACID AND L-ALANINE AND L-GLUTAMIC ACID AND L-TYROSINE IN RANDOM-BRED HARTLEY GUINEA PIGS
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SPECIFIC IMMUNE RESPONSE GENES OF THE GUINEA PIG : II. RELATIONSHIP BETWEEN THE POLY-L-LYSINE GENE AND THE GENES CONTROLLING IMMUNE RESPONSIVENESS TO COPOLYMERS OF L-GLUTAMIC ACID AND L-ALANINE AND L-GLUTAMIC ACID AND L-TYROSINE IN RANDOM-BRED HARTLEY GUINEA PIGS

机译:几内亚猪的特定免疫反应基因:II。杂种哈特利豚鼠中聚L-赖氨酸基因与控制L-谷氨酸和L-丙氨酸共聚物和L-谷氨酸和L-酪氨酸共聚物的免疫反应基因之间的关系

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摘要

The ability of guinea pigs to make immune responses to GA, a linear random copolymer of L-glutamic acid and L-alanine, GT, a random linear copolymer of L-glutamic acid and L-tyrosine, and PLL, a linear homopolymer of L-lysine, is controlled by different autosomal dominant genes specific for each of those polymers. We have investigated the relationship between the PLL gene and the GA and GT immune response genes by simultaneously immunizing random-bred Hartley strain guinea pigs with GA and PLL, GT and PLL, or GA and GT. In most Hartley guinea pigs the ability to respond immunologically to GA and to PLL is inherited together; that is, most animals responding to GA respond to PLL and vice versa. However, a few animals respond to either GA or to PLL but not both, demonstrating that the GA and PLL immune response genes are not identical but linked in most Hartley animals. Conversely, when simultaneously immunized with GT and PLL, most Hartley guinea pigs respond to either PLL or GT but not both, indicating that GT and PLL responsiveness tends to segregate away from each other. Thus, the GT and PLL immune response genes also are not inherited independently but, rather, behave as alleles or pseudoalleles. Similar results are observed when Hartley guinea pigs are simultaneously immunized with GA and GT. The ability to respond to GA segregates away from the ability to respond to GT. Our studies demonstrated that the specific immune response genes thus far identified in guinea pigs controlling the ability to respond to GA, GT, and PLL, respectively, are found on the same chromosome. In most Hartley animals, the GA and PLL immune response genes are often linked, i.e. occur on the same chromosome strand, and tend to behave as alleles or pseudoalleles to the GT immune response gene.
机译:豚鼠对GA,L-谷氨酸和L-丙氨酸的线性无规共聚物,GT,L-谷氨酸和L-酪氨酸的无规线性共聚物以及PLL(L的线性均聚物)产生免疫反应的能力α-赖氨酸受这些聚合物各自特异的不同常染色体显性基因控制。我们通过同时用GA和PLL,GT和PLL或GA和GT免疫随机繁殖的Hartley品系豚鼠,研究了PLL基因与GA和GT免疫反应基因之间的关系。在大多数Hartley豚鼠中,对GA和PLL的免疫反应能力是一起遗传的;也就是说,大多数对GA产生响应的动物都会对PLL产生响应,反之亦然。但是,有少数动物对GA或PLL均响应,但对两者均不响应,这表明GA和PLL免疫响应基因不同,但在大多数Hartley动物中却有联系。相反,当同时用GT和PLL进行免疫时,大多数Hartley豚鼠对PLL或GT均产生反应,但对两者均无反应,这表明GT和PLL的反应性趋于彼此隔离。因此,GT和PLL免疫反应基因也不是独立遗传的,而是表现为等位基因或伪等位基因。当同时用GA和GT免疫Hartley豚鼠时,观察到相似的结果。对GA的响应能力与对GT的响应能力分开。我们的研究表明,迄今在豚鼠中鉴定出的分别控制GA,GT和PLL响应能力的特异性免疫应答基因位于同一条染色体上。在大多数Hartley动物中,GA和PLL免疫应答基因通常是关联的,即出现在同一条染色体链上,并且倾向于表现为GT免疫应答基因的等位基因或伪等位基因。

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