Collart D, Romain P L, Huebner K, Pockwinse S, Pilapil S, Cannizzaro L A, Lian J B, Croce C M, Stein J L, Stein G S
Department of Biology, Emory University, Atlanta, Georgia 30322.
J Cell Biochem. 1992 Dec;50(4):374-85. doi: 10.1002/jcb.240500406.
A variant human H2B histone gene (GL105), previously shown to encode a 2300 nt replication independent mRNA, has been cloned. We demonstrate this gene expresses alternative mRNAs regulated differentially during the HeLa S3 cell cycle. The H2B-Gl105 gene encodes both a 500 nt cell cycle dependent mRNA and a 2300 nt constitutively expressed mRNA. The 3' end of the cell cycle regulated mRNA terminates immediately following the region of hyphenated dyad symmetry typical of most histone mRNAs, whereas the constitutively expressed mRNA has a 1798 nt non-translated trailer that contains the same region of hyphenated dyad symmetry but is polyadenylated. The cap site for the H2B-GL105 mRNAs is located 42 nt upstream of the protein coding region. The H2B-GL105 histone gene was localized to chromosome region 1q21-1q23 by chromosomal in situ hybridization and by analysis of rodent-human somatic cell hybrids using an H2B-GL105 specific probe. The H2B-GL105 gene is paired with a functional H2A histone gene and this H2A/H2B gene pair is separated by a bidirectionally transcribed intergenic promoter region containing consensus TATA and CCAAT boxes and an OTF-1 element. These results demonstrate that cell cycle regulated and constitutively expressed histone mRNAs can be encoded by the same gene, and indicate that alternative 3' end processing may be an important mechanism for regulation of histone mRNA. Such control further increases the versatility by which cells can modulate the synthesis of replication-dependent as well as variant histone proteins during the cell cycle and at the onset of differentiation.
一种变异的人类H2B组蛋白基因(GL105)已被克隆,该基因先前已被证明可编码一种2300 nt的不依赖复制的mRNA。我们证明该基因表达在HeLa S3细胞周期中受到不同调控的可变mRNA。H2B-Gl105基因既编码一种500 nt的细胞周期依赖性mRNA,也编码一种2300 nt的组成型表达mRNA。细胞周期调控的mRNA的3'端在大多数组蛋白mRNA典型的连字符化二元对称区域之后立即终止,而组成型表达的mRNA有一个1798 nt的非翻译尾区,该尾区包含相同的连字符化二元对称区域,但进行了多聚腺苷酸化。H2B-GL105 mRNA的帽位点位于蛋白质编码区上游42 nt处。通过染色体原位杂交以及使用H2B-GL105特异性探针分析啮齿动物-人类体细胞杂种,将H2B-GL105组蛋白基因定位到染色体区域1q21-1q23。H2B-GL105基因与一个功能性H2A组蛋白基因配对,并且这个H2A/H2B基因对被一个双向转录的基因间启动子区域隔开,该区域包含共有TATA和CCAAT框以及一个OTF-1元件。这些结果表明,细胞周期调控的和组成型表达的组蛋白mRNA可由同一个基因编码,并表明可变的3'端加工可能是组蛋白mRNA调控的一个重要机制。这种调控进一步增加了细胞在细胞周期和分化开始时调节依赖复制的以及变异组蛋白合成的多功能性。