Roy Ananda L
Department of Pathology, Tufts University School of Medicine, 150 Harrison Avenue, Boston, MA 02111, USA.
Biochim Biophys Acta. 2007 Nov-Dec;1769(11-12):613-21. doi: 10.1016/j.bbaexp.2007.10.002. Epub 2007 Oct 11.
We have learned a great deal over the last several years about the molecular mechanisms that govern cell growth, cell division and cell death. Normal cells pass through cell cycle (growth) and divide in response to mitogenic signals that are transduced through their cognate cell surface receptors to the nucleus. Despite the fact that cellular growth and division are mechanistically distinct steps, they are usually coordinately regulated, which is critical for normal cellular proliferation. The precise mechanistic basis for this coordinated regulation is unclear. TFII-I is a unique, signal-induced multifunctional transcription factor that is activated upon a variety of signaling pathways and appears to participate in distinct phases of cell growth. For instance, TFII-I is required for growth factor-induced transcriptional activation of the c-fos gene, which is essential for cell cycle entry. Two alternatively spliced isoforms of TFII-I exhibit opposing but necessary functions for mitogen-induced transcriptional activation of c-fos. Besides transcriptional activation of the c-fos proto-oncogene and eventual entry into cell cycle, TFII-I also appears to have a role in later phases of the cell cycle and cell division. Here we discuss how a multitude of signaling inputs target TFII-I isoforms, which may exert their functions in distinct phases of the cell cycle and play a key role in the coordinated regulation of cellular proliferation.
在过去几年里,我们对调控细胞生长、细胞分裂和细胞死亡的分子机制有了很多了解。正常细胞会经历细胞周期(生长),并在有丝分裂信号的作用下进行分裂,这些信号通过其相应的细胞表面受体传导至细胞核。尽管细胞生长和分裂在机制上是不同的步骤,但它们通常受到协调调控,这对正常细胞增殖至关重要。这种协调调控的确切机制基础尚不清楚。TFII-I是一种独特的、信号诱导的多功能转录因子,在多种信号通路激活后被激活,似乎参与细胞生长的不同阶段。例如,TFII-I是生长因子诱导的c-fos基因转录激活所必需的,而c-fos基因对细胞周期进入至关重要。TFII-I的两种选择性剪接异构体在有丝分裂原诱导的c-fos转录激活中表现出相反但必要的功能。除了c-fos原癌基因的转录激活以及最终进入细胞周期外,TFII-I似乎在细胞周期和细胞分裂的后期阶段也发挥作用。在这里,我们讨论多种信号输入如何靶向TFII-I异构体,这些异构体可能在细胞周期的不同阶段发挥功能,并在细胞增殖的协调调控中起关键作用。