Medford R M, Wydro R M, Nguyen H T, Nadal-Ginard B
Proc Natl Acad Sci U S A. 1980 Oct;77(10):5749-53. doi: 10.1073/pnas.77.10.5749.
A recombinant DNA plasmid, designated pMHC25, has been constructed that contains structural gene sequences for rat skeletal muscle myosin heavy chain (MHC). The identity of the MHC sequence insert in pMHC25 was determined by muscle-tissue specificity, inhibition of MHC protein synthesis in vitro by hybrid-arrested translation, purification of mRNA that directs the synthesis of MHC protein in vitro, and hybridization to a 33S cytoplasmic mRNA found only in differentiated muscle cells. pMHC25-DNA-excess filter hybridizations were used to show that more than 90% of the newly synthesized MHC mRNA that appears in the cytoplasm of differentiated L6E9 myotubes contains a long 3' poly(A) tail. In contrast, 90% of the MHC mRNA that accumulates in the cytoplasm of these same cells during myogenic differentiation lacks this long 3' poly(A) tail. These results suggest the occurrence of a posttranscriptional event in differentiated L6E9 myotubes that involves the cytoplasmic processing of poly(A)+ MHC mRNA to poly(A)- or poly(A)-short MHC mRNA.
已构建出一种名为pMHC25的重组DNA质粒,它含有大鼠骨骼肌肌球蛋白重链(MHC)的结构基因序列。通过肌肉组织特异性、杂交抑制翻译对体外MHC蛋白质合成的抑制作用、体外指导MHC蛋白质合成的mRNA的纯化以及与仅在分化的肌肉细胞中发现的33S细胞质mRNA杂交,确定了pMHC25中MHC序列插入片段的身份。使用pMHC25 - DNA过量滤膜杂交表明,出现在分化的L6E9肌管细胞质中的新合成的MHC mRNA中,超过90%含有长的3'聚腺苷酸尾巴。相反,在这些相同细胞的成肌分化过程中积累在细胞质中的MHC mRNA,90%缺乏这种长的3'聚腺苷酸尾巴。这些结果表明,在分化的L6E9肌管中发生了一种转录后事件,该事件涉及将聚腺苷酸加尾的MHC mRNA在细胞质中加工成聚腺苷酸缺失或聚腺苷酸短的MHC mRNA。