首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Two alpha heavy chain disease proteins with different genomic deletions demonstrate that nonexpressed alpha heavy chain genes contain methylated bases.
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Two alpha heavy chain disease proteins with different genomic deletions demonstrate that nonexpressed alpha heavy chain genes contain methylated bases.

机译:具有不同基因组缺失的两种α重链疾病蛋白证明未表达的α重链基因含有甲基化碱基。

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摘要

Two independently arising alpha heavy chain mutants have been found to synthesize heavy chains with CH1 deletions of approximately equal extent. Both were isolated from heavy chain-producing variants of the mouse myeloma W3129 and demonstrate that it is possible to arrive at the heavy chain disease phenotype by the pathway H + L leads to H leads to delta H. Analysis of genomic DNA by digestion with restriction endonucleases followed by molecular hybridization showed that one mutant (delta 37) had a deletion of approximately 0.2 kilobase and the second mutant (delta 15) had a deletion of approximately 0.5 kilobase. Mouse myeloma cells contain several alpha chain alleles but only one is expressed; the presence of the deletion in delta 37 and delta 15 made it possible to identify the restriction fragments from the expressed allele. Analysis of the fragments produced after cleavage with an isoschizomeric pair of restriction enzymes, Msp I and Hpa II, indicated that, in the W3129 cell line and its variants, the unexpressed alpha alleles contain methylated bases. The influence of methylation on gene expression remains to be elucidated.
机译:已经发现两个独立产生的α重链突变体合成具有大约相等程度的CH1缺失的重链。两者均从小鼠骨髓瘤W3129产生重链的变体中分离出来,并证明有可能通过H + L导致H导致δH的途径来达到重链疾病表型。通过限制性酶切分析基因组DNA核酸内切酶随后进行分子杂交表明,一个突变体(δ37)的缺失约为0.2 kb,第二个突变体(δ15)的缺失约为0.5 kb。小鼠骨髓瘤细胞含有几个α链等位基因,但仅表达一个。 Δ37和Δ15中缺失的存在使得有可能从表达的等位基因中鉴定限制性片段。用限制酶的同分异构体对Msp I和Hpa II切割后产生的片段的分析表明,在W3129细胞系及其变体中,未表达的α等位基因含有甲基化碱基。甲基化对基因表达的影响尚待阐明。

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