Halfon M S, Carmena A, Gisselbrecht S, Sackerson C M, Jiménez F, Baylies M K, Michelson A M
Department of Medicine, Brigham and Women's Hospital, Harvard Medical School and Howard Hughes Medical Institute, Boston, Massachusetts 02115, USA.
Cell. 2000 Sep 29;103(1):63-74. doi: 10.1016/s0092-8674(00)00105-7.
Ras signaling elicits diverse outputs, yet how Ras specificity is generated remains incompletely understood. We demonstrate that Wingless (Wg) and Decapentaplegic (Dpp) confer competence for receptor tyrosine kinase-mediated induction of a subset of Drosophila muscle and cardiac progenitors by acting both upstream of and in parallel to Ras. In addition to regulating the expression of proximal Ras pathway components, Wg and Dpp coordinate the direct effects of three signal-activated (dTCF, Mad, and Pointed-functioning in the Wg, Dpp, and Ras/MAPK pathways, respectively) and two tissue-restricted (Twist and Tinman) transcription factors on a progenitor identity gene enhancer. The integration of Pointed with the combinatorial effects of dTCF, Mad, Twist, and Tinman determines inductive Ras signaling specificity in muscle and heart development.
Ras信号传导引发多种输出,但Ras特异性是如何产生的仍未完全了解。我们证明,无翅(Wg)和果蝇转化生长因子β(Dpp)通过在Ras上游和与其平行发挥作用,赋予受体酪氨酸激酶介导的果蝇肌肉和心脏祖细胞亚群诱导的能力。除了调节近端Ras信号通路成分的表达外,Wg和Dpp还协调三种信号激活(分别在Wg、Dpp和Ras/丝裂原活化蛋白激酶通路中起作用的dTCF、Mad和Pointed)和两种组织限制性(Twist和Tinman)转录因子对祖细胞身份基因增强子的直接作用。Pointed与dTCF、Mad、Twist和Tinman的组合效应的整合决定了肌肉和心脏发育中诱导性Ras信号传导的特异性。