主导负MYC阻断了ABL瘤基因的转化
C L Sawyers1, W Callahan, O N Witte
1Department of Medicine, Howard Hughes Medical Institute, University of California, Los Angeles 90024.
Cell
|September 18, 1992
概括
高MYC水平与ABL瘤基因产生协同作用. 主导负MYC抑制了ABL诱导的转化,证明了c-MYC.
科学领域:
- 瘤基因组学 瘤基因组学
- 细胞转化 细胞转化
- 分子生物学分子生物学
背景情况:
- MYC瘤基因表达通常与ABL瘤基因协同作用.
- 在ABL中介转换中MYC的确切作用需要进一步阐明.
研究的目的:
- 调查MYC是否对ABL瘤基因驱动的细胞转化至关重要.
- 为了确定MYC是否补充或不可或缺的ABL瘤基因转化.
主要方法:
- 纤维细胞中主导负MYC蛋白的过度表达.
- 评估优势负MYC对v-abl和BCR-ABL瘤基因诱导的转化的影响.
- 通过使用共表达BCR-ABL和MYC的逆转录病毒构造来评估小鼠骨髓初级B前细胞的转化.
主要成果:
- 主导阴性MYC减少了v-abl和BCR-ABL基因的转化5到10倍.
- 由氨酸/氨酸激酶瘤基因v-mos诱导的转化没有受到影响.
- 主导阴性MYC抑制了初级小鼠骨髓B前细胞的BCR-ABL介导转化.
结论:
- c-MYC对于ABL瘤基因介导的细胞转化至关重要.
- 这些发现有助于定义涉及MYC和ABL在瘤发生过程中的分子途径.
相关概念视频
Abnormal Proliferation
4.0K
Under normal conditions, most adult cells remain in a non-proliferative state unless stimulated by internal or external factors to replace lost cells. Abnormal cell proliferation is a condition in which the cell's growth exceeds and is uncoordinated with normal cells. In such situations, cell division persists in the same excessive manner even after cessation of the stimuli, leading to persistent tumors. The tumor arises from the damaged cells that replicate to pass the damage to the...
4.0K
Loss of Tumor Suppressor Gene Functions
5.0K
Tumor suppressor genes are normal genes that can slow down cell division, repair DNA mistakes, or program the cells for apoptosis in case of irreparable damage. Hence, they play an essential role in preventing the proliferation of damaged cells.
When the tumor suppressor genes develop mutations or are lost, cells start growing out of control, leading to cancer. However, a single functional copy of the tumor suppressor gene is enough for the cells to maintain their normal functions and cell...
When the tumor suppressor genes develop mutations or are lost, cells start growing out of control, leading to cancer. However, a single functional copy of the tumor suppressor gene is enough for the cells to maintain their normal functions and cell...
5.0K
Targeted Cancer Therapies
7.1K
The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against...
There are several types of targeted therapies against...
7.1K
Anaphase Promoting Complex
2.5K
The stepwise destruction of specific proteins is necessary for the progression and completion of the cell cycle. Such proteins are ubiquitinated by ubiquitin ligases and then subsequently destroyed by the proteasome. The SCF (Skp1/Cullin/F-box) and the anaphase-promoting complex (APC) are two important ubiquitin ligases involved in cell cycle progression. While SCF is active throughout the cell cycle, APC gets activated during metaphase to anaphase transition. Cdc20 or Cdh1 binds to APC and...
2.5K
Cancer-Critical Genes II: Tumor Suppressor Genes
8.3K
Genes usually encode proteins necessary for the proper functioning of a healthy cell. Mutations can often cause changes to the gene expression pattern, thereby altering the phenotype.
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...
When the function of certain critical genes, especially those involved in cell cycle regulation and cell growth signaling cascades, gets disrupted, it upsets the cell cycle progression. Such cells with unchecked cell cycles start proliferating uncontrollably and eventually develop into tumors.
Such genes that act...
8.3K
Induced Pluripotent Stem Cells
4.8K
Stem cells are undifferentiated cells that divide and produce different cell types. Ordinarily, cells that have differentiated into a specific cell type are terminally differentiated; however, scientists have found a way to reprogram these mature cells so that they dedifferentiate and return to an unspecialized, proliferative state. These cells are pluripotent like embryonic stem cells—able to produce all cell types—and are called induced pluripotent stem cells (iPSCs).
Somatic...
Somatic...
4.8K


