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p75神经营养因子受体信号传导的细胞生物学模型。

A cell-biological model of p75NTR signaling.

作者信息

Blöchl A, Blöchl R

机构信息

Biochemie II, Fakultät Chemie und Biochemie, Ruhr-Universität Bochum, Bochum, Germany.

出版信息

J Neurochem. 2007 Jul;102(2):289-305. doi: 10.1111/j.1471-4159.2007.04496.x. Epub 2007 Apr 16.

Abstract

Neurotrophin stimulation of tropomyosin-related kinase (Trk) and p75 receptors influences cellular processes such as proliferation, growth, differentiation, and other cell-specific functions, as well as regeneration. In contrast to Trk receptors, which have a well-defined trophic role, p75 has activities ranging from trophism to apoptosis. Continued neurotrophin stimulation of differentiating neurons transforms the initially trophic character of p75 signaling into negative growth control and overstimulation leads to apoptosis. This function shift reflects the signaling effects of ceramide that is generated upon stimulation of p75. The use of ceramide signaling by p75 may provide a key to understanding the cell-biological role of p75. The review presents arguments that the control of cell shape formation and cell selection can serve as an organizing principle of p75 signaling. Concurrent stimulation by neurotrophins of p75 and Trk receptors constitutes a dual growth control with antagonistic and synergistic elements aimed at optimal morphological and functional integration of cells and cell populations into their context.

摘要

神经营养因子对原肌球蛋白相关激酶(Trk)和p75受体的刺激会影响细胞增殖、生长、分化等细胞过程以及其他细胞特异性功能,还有再生。与具有明确营养作用的Trk受体不同,p75的活性范围从营养作用到细胞凋亡。持续用神经营养因子刺激分化中的神经元会将p75信号最初的营养特性转变为负生长控制,过度刺激则会导致细胞凋亡。这种功能转变反映了p75受刺激时产生的神经酰胺的信号作用。p75对神经酰胺信号的利用可能是理解p75细胞生物学作用的关键。该综述提出了这样的观点,即细胞形状形成和细胞选择的控制可作为p75信号传导的组织原则。神经营养因子对p75和Trk受体的同时刺激构成了一种双重生长控制,其中包含拮抗和协同成分,旨在使细胞和细胞群体在其环境中实现最佳的形态和功能整合。

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