Sawa H, Ohshima T A, Ukita H, Murakami H, Chiba Y, Kamada H, Hara M, Saito I
Department of Neurosurgery, Kyorin University School of Medicine, Mitaka, Tokyo, Japan.
Oncogene. 1998 Apr 2;16(13):1701-12. doi: 10.1038/sj.onc.1201691.
Alternative splicing of cyclin D1 gene mRNA has recently been demonstrated. The novel transcript shows no splicing at the downstream exon 4 boundary and encodes a protein with an altered carboxyl-terminal domain that is a cyclin D1 variant; exon 5 is not included in the coding sequence which terminates downstream of exon 4. We here produced cells that exogenously express each form of cyclin D1 and analysed their cell cycle regulation. We found that (1) alternative splicing forms of cyclin D1 modulated entry into the cell cycle in an inverse manner; (2) both splicing forms suppressed cell growth; and (3) cells overexpressing form [a] were inhibited from entry into and completion of the S phase, although form [b]-expressing cells showed no reduction of G1- to S transition. We also found that overexpression of either cyclin D1 form upregulated Rb gene products, suggesting that this upregulation may be one of the causes of growth suppression in cyclin D1 overexpressing cells.
细胞周期蛋白D1基因mRNA的可变剪接最近已得到证实。这种新的转录本在下游外显子4边界处没有剪接,编码一种羧基末端结构域发生改变的蛋白质,它是细胞周期蛋白D1的一种变体;外显子5不包含在终止于外显子4下游的编码序列中。我们在此制备了外源性表达每种细胞周期蛋白D1形式的细胞,并分析了它们的细胞周期调控。我们发现:(1)细胞周期蛋白D1的可变剪接形式以相反的方式调节进入细胞周期;(2)两种剪接形式均抑制细胞生长;(3)过表达[a]形式的细胞进入S期及完成S期受到抑制,而表达[b]形式的细胞在G1期到S期的转变上没有减少。我们还发现,两种细胞周期蛋白D1形式的过表达均上调了Rb基因产物,这表明这种上调可能是细胞周期蛋白D1过表达细胞生长抑制的原因之一。