Wassenberg D R, Kronert W A, O'Donnell P T, Bernstein S I
J Biol Chem. 1987 Aug 5;262(22):10741-7.
We have localized the transcription start site of the Drosophila melanogaster muscle myosin heavy chain (MHC) gene and find that all forms of the alternatively spliced MHC mRNA initiate at the same location. Therefore the alternative inclusion/exclusion of the 3' penultimate exon in transcripts from this gene (Bernstein, S.I., Hansen, C.J., Becker, K.D., Wassenberg, D.R., II, Roche, E.S., Donady, J.J., and Emerson, C. P., Jr. (1986) Mol. Cell. Biol. 6, 2511-2519; Rozek, C.E., and Davidson, N. (1986) Proc. Natl. Acad. Sci. U.S.A. 83, 2128-2134) does not result from the use of different 5' transcription initiation sites. This gene is the first invertebrate MHC gene shown to have TATA and CAAT box consensus sequences and a noncoding 5' exon, properties that are shared with some vertebrate and invertebrate contractile protein genes. The intron that splits the 5' noncoding region of the Drosophila MHC gene contains no major conserved elements relative to other Drosophila contractile protein genes. The introns within the coding region near the 5' end of the Drosophila MHC gene are located at the same sites as nematode and vertebrate MHC gene introns, indicating that these MHC genes are derived from a common ancestral sequence. The putative ATP binding domain encoded in the fourth exon of the Drosophila MHC gene is highly conserved relative to vertebrate, invertebrate, and non-muscle MHC genes suggesting that each of these myosins bind ATP by the same mechanism. Two divergent copies of the third exon are present within the 5' region of the Drosophila MHC gene, suggesting that alternative splicing produces MHC isoforms with different globular head regions.
我们已定位了黑腹果蝇肌肉肌球蛋白重链(MHC)基因的转录起始位点,发现该基因可变剪接产生的所有形式的MHC mRNA均在同一位置起始。因此,该基因转录本中3'倒数第二个外显子的选择性包含/排除(Bernstein, S.I., Hansen, C.J., Becker, K.D., Wassenberg, D.R., II, Roche, E.S., Donady, J.J., and Emerson, C. P., Jr. (1986) Mol. Cell. Biol. 6, 2511 - 2519; Rozek, C.E., and Davidson, N. (1986) Proc. Natl. Acad. Sci. U.S.A. 83, 2128 - 2134)并非源于使用不同的5'转录起始位点。该基因是首个被证明具有TATA盒和CAAT盒共有序列以及一个非编码5'外显子的无脊椎动物MHC基因,这些特性与一些脊椎动物和无脊椎动物收缩蛋白基因相同。与其他果蝇收缩蛋白基因相比,将果蝇MHC基因5'非编码区域分开的内含子不包含主要的保守元件。果蝇MHC基因5'端附近编码区域内的内含子与线虫和脊椎动物MHC基因内含子位于相同位置,这表明这些MHC基因源自共同的祖先序列。果蝇MHC基因第四外显子中编码的假定ATP结合结构域相对于脊椎动物、无脊椎动物和非肌肉MHC基因高度保守,这表明这些肌球蛋白中的每一种都通过相同的机制结合ATP。果蝇MHC基因5'区域内存在第三外显子的两个不同拷贝,这表明可变剪接产生了具有不同球状头部区域的MHC异构体。