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Inter-dependent tissue growth and Turing patterning in a model for long bone development

机译:相互依赖的组织生长和长骨发育模型中的图灵模式

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The development of long bones requires a sophisticated spatial organization of cellular signalling, proliferation, and differentiation programs. How such spatial organization emerges on the growing long bone domain is still unresolved. Based on the reported biochemical interactions we developed a regulatory model for the core signalling factors IHH, PTCH1, and PTHrP and included two cell types, proliferating/resting chondrocytes and (pre-) hypertrophic chondrocytes. We show that the reported IHH-PTCH1 interaction gives rise to a Schnakenberg-type Turing kinetics, and that inclusion of PTHrP is important to achieve robust patterning when coupling patterning and tissue dynamics. The model reproduces relevant spatiotemporal gene expression patterns, as well as a number of relevant mutant phenotypes. In summary, we propose that a ligand-receptor based Turing mechanism may control the emergence of patterns during long bone development, with PTHrP as an important mediator to confer patterning robustness when the sensitive Turing system is coupled to the dynamics of a growing and differentiating tissue. We have previously shown that ligand-receptor based Turing mechanisms can also result from BMP-receptor, SHH-receptor, and GDNF-receptor interactions, and that these reproduce the wildtype and mutant patterns during digit formation in limbs and branching morphogenesis in lung and kidneys. Receptor-ligand interactions may thus constitute a general mechanism to generate Turing patterns in nature.
机译:长骨的发育需要细胞信号传导,增殖和分化程序的复杂空间组织。这种空间组织如何在不断增长的长骨区域上出现仍然是未知的。基于已报道的生化相互作用,我们开发了核心信号传导因子IHH,PTCH1和PTHrP的调控模型,包括两种细胞类型,即增殖/静息软骨细胞和(肥大)软骨细胞。我们表明,所报道的IHH-PTCH1相互作用引起了Schnakenberg型图灵动力学,并且PTHrP的包含对于在耦合模式和组织动力学时实现强大的模式很重要。该模型再现了相关的时空基因表达模式,以及许多相关的突变表型。总而言之,我们提出基于配体-受体的图灵机制可以控制长骨发育过程中模式的出现,当敏感的图灵系统与生长和分化组织的动力学耦合时,PTHrP作为重要的介体可赋予模式鲁棒性。先前我们已经表明,基于配体-受体的图灵机制也可以由BMP-受体,SHH-受体和GDNF-受体相互作用产生,并且这些在肢体手指形成以及肺和肾脏的分支形态发生过程中重现了野生型和突变型。 。受体-配体相互作用因此可以构成在自然界中产生图灵模式的一般机制。

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