Tigges M A, Raskas H J
J Virol. 1982 Dec;44(3):907-21. doi: 10.1128/JVI.44.3.907-921.1982.
Adenovirus-2 early region 4 (E4; map positions 91.3 to 99.1) encodes six 5' and 3' coterminal, differently spliced mRNAs, which are 2.5, 2.1, 1.8, 1.5, 1.2, and 0.8 kilobases (kb) long. Hybridization selection with five cloned viral DNA fragments that hybridize with subsets of E4 mRNAs was used to purify these six mRNAs and a previously unreported 3.0-kb mRNA from virus-infected cells. E4 mRNAs which were purified by hybridization selection with cloned EcoRI fragment C (map positions 89.7 to 100) were also fractionated by size. The purified mRNAs were then translated in rabbit reticulocyte or wheat germ lysate systems. The full complement of E4 mRNAs specified as many as 16 different polypeptides, with molecular weights ranging from 24,000 (24K) to 10K. The most abundant E4 mRNA, which was 2.1 kb long, specified an 11K polypeptide. The 1.5-kb mRNA, which differed from the 2.1-kb mRNA only by deletion of a second intron from the 3' untranslated region, also specified an 11K polypeptide. The second most abundant mRNA, which was 1.8 kb long, and the 1.2-kb mRNA, which had an intron deleted from the 3' untranslated region, specified a 15K polypeptide. This polypeptide was labeled more intensely with [5,6-(3)H]leucine than with [35S]methionine. The 3.0- and 2.5-kb mRNAs specified four polypeptides (24K, 22K, 19K, and 17K). Translation of E4 mRNAs with a mean size of 0.8 kb, which accumulated preferentially in the presence of cycloheximide, yielded at least 10 polypeptides that migrated in polyacrylamide gels with apparent molecular weights ranging from 21,800 to 10,000. On the basis of translation in wheat germ lysates and the distribution of polypeptides encoded by size-fractionated mRNAs, we concluded that the 0.8-kb mRNA size class includes a heterogeneous mixture of mRNAs which are probably formed as the result of utilization of alternate splice acceptor and donor sites during removal of the second intron. Our polypeptide assignments for the 2.1-, 1.8-, 1.5-, and 1.2-kb mRNAs are compatible with locations of two open coding regions in the DNA sequence (Herisse et al., Nucleic Acids Res. 9:4023-4042, 1981). The relationship between the four polypeptides encoded by the 3.0- and 2.5-kb mRNAs and the two open coding regions is discussed. The production of multiple polypeptides from a heterogenous mixture of mRNAs in the 0.8-kb size class is compatible with two large open coding regions in that part of the sequence. Thus, nearly all of the potential coding information in the leftward strand of E4 is expressed in translatable form during infection. Moreover, alternate splicing of the 0.8-kb mRNA size class can produce multiple polypeptides with common amino-terminal and different carboxy-terminal amino acid sequences, which may have the same function but different specificities.
腺病毒2型早期区域4(E4;图谱位置91.3至99.1)编码6种5'和3'末端相同但剪接方式不同的mRNA,其长度分别为2.5、2.1、1.8、1.5、1.2和0.8千碱基(kb)。利用与E4 mRNA亚群杂交的5个克隆病毒DNA片段进行杂交选择,从病毒感染细胞中纯化出这6种mRNA以及一种先前未报道的3.0 kb mRNA。通过与克隆的EcoRI片段C(图谱位置89.7至100)杂交选择纯化的E4 mRNA也按大小进行了分级分离。然后将纯化的mRNA在兔网织红细胞或麦胚裂解物系统中进行翻译。E4 mRNA的完整互补序列可编码多达16种不同的多肽,分子量范围从24,000(24K)到10K。最丰富的E4 mRNA长度为2.1 kb,编码一种11K多肽。1.5 kb的mRNA与2.1 kb的mRNA的区别仅在于其3'非翻译区缺失了第二个内含子,它也编码一种11K多肽。第二丰富的mRNA长度为1.8 kb,以及3'非翻译区缺失一个内含子的1.2 kb mRNA,编码一种15K多肽。该多肽用[5,6-(3)H]亮氨酸标记比用[35S]甲硫氨酸标记更强烈。3.0 kb和2.5 kb的mRNA编码4种多肽(24K、22K、19K和17K)。平均大小为0.8 kb的E4 mRNA在放线菌酮存在下优先积累,其翻译产物在聚丙烯酰胺凝胶中迁移,产生至少10种多肽,表观分子量范围从21,800到10,000。基于在麦胚裂解物中的翻译以及大小分级的mRNA所编码多肽的分布情况,我们得出结论,0.8 kb mRNA大小类别包含多种mRNA的异质混合物,它们可能是在去除第二个内含子过程中利用不同的剪接受体和供体位点形成的。我们对2.1 kb、1.8 kb、1.5 kb和1.2 kb mRNA的多肽分配与DNA序列中两个开放编码区的位置相符(赫里斯等人,《核酸研究》9:4023 - 4042,1981)。讨论了3.0 kb和2.5 kb mRNA编码的4种多肽与两个开放编码区之间的关系。0.8 kb大小类别中多种mRNA异质混合物产生多种多肽,这与该序列部分中的两个大的开放编码区相符。因此,在感染期间,E4左向链中几乎所有潜在的编码信息都以可翻译的形式表达。此外,0.8 kb mRNA大小类别的可变剪接可产生具有共同氨基末端和不同羧基末端氨基酸序列的多种多肽,它们可能具有相同的功能但特异性不同。