Bicoid gradient formation mechanism and dynamics revealed by protein lifetime analysis

被引:37
|
作者
Durrieu, Lucia [1 ,2 ,7 ,8 ]
Kirrmaier, Daniel [1 ,3 ]
Schneidt, Tatjana [2 ]
Kats, Ilia [1 ]
Raghavan, Sarada [1 ,9 ]
Hufnagel, Lars [2 ]
Saunders, Timothy E. [2 ,4 ,5 ,6 ]
Knop, Michael [1 ,3 ]
机构
[1] Heidelberg Univ, DKFZ ZMBH Alliance, ZMBH, Heidelberg, Germany
[2] EMBL, Heidelberg, Germany
[3] DKFZ ZMBH Alliance, Deutsch Krebsforschungszentrum DKFZ, Heidelberg, Germany
[4] Natl Univ Singapore, Mechanobiol Inst, Singapore, Singapore
[5] Natl Univ Singapore, Dept Biol Sci, Singapore, Singapore
[6] ASTAR, Inst Mol & Cell Biol, Singapore, Singapore
[7] Inst Leloir, Buenos Aires, DF, Argentina
[8] Univ Buenos Aires, Fac Ciencias Exactas & Nat, Dept Fisiol Biol Mol & Celular, Buenos Aires, DF, Argentina
[9] ASTAR, Lab P53, Singapore, Singapore
基金
新加坡国家研究基金会;
关键词
Drosophila melanogaster; embryogenesis; fluorescent timers; morphogen gradient; SPIM; EARLY DROSOPHILA EMBRYO; LIGHT-SHEET MICROSCOPY; MORPHOGEN GRADIENT; POSITIONAL INFORMATION; FLUORESCENCE MICROSCOPY; FATE DETERMINATION; GENE NETWORK; DEGRADATION; PATTERN; RNA;
D O I
10.15252/msb.20188355
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Embryogenesis relies on instructions provided by spatially organized signaling molecules known as morphogens. Understanding the principles behind morphogen distribution and how cells interpret locally this information remains a major challenge in developmental biology. Here, we introduce morphogen-age measurements as a novel approach to test models of morphogen gradient formation. Using a tandem fluorescent timer as a protein age sensor, we find a gradient of increasing age of Bicoid along the anterior-posterior axis in the early Drosophila embryo. Quantitative analysis of the protein age distribution across the embryo reveals that the synthesis-diffusion-degradation model is the most likely model underlying Bicoid gradient formation, and rules out other hypotheses for gradient formation. Moreover, we show that the timer can detect transitions in the dynamics associated with syncytial cellularization. Our results provide new insight into Bicoid gradient formation and demonstrate how morphogen-age information can complement knowledge about movement, abundance, and distribution, which should be widely applicable to other systems.
引用
收藏
页数:15
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