首页> 美国卫生研究院文献>The EMBO Journal >Functional analysis of mutant neurotrophins deficient in low-affinity binding reveals a role for p75LNGFR in NT-4 signalling.
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Functional analysis of mutant neurotrophins deficient in low-affinity binding reveals a role for p75LNGFR in NT-4 signalling.

机译:缺乏低亲和力结合的突变神经营养蛋白的功能分析揭示p75LNGFR在NT-4信号传导中的作用。

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摘要

The neurotrophins mediate their effects through binding to two classes of receptors, a tyrosine kinase receptor, member of the Trk family, and the low-affinity neurotrophin receptor, p75LNGFR, of as yet undefined signalling capacity. The need for a two-component receptor system in neurotrophin signalling is still not understood. Using site-directed mutagenesis, we have identified positively charged surfaces in BDNF, NT-3 and NT-4 that mediate binding to p75LNGFR. Arg31 and His33 in NT-3, and Arg34 and Arg36 in NT-4, located in an exposed hairpin loop, were found to be essential for binding to p75LNGFR. In BDNF, however, positively charged residues critical for p75LNGFR binding (Lys95, Lys96 and Arg97) were found in a spatially close but distinct loop region. Models of each neurotrophin were built using the coordinates of NGF. Analysis of their respective electrostatic surface potentials revealed similar clusters of positively charged residues in each neurotrophin but with differences in their precise spatial locations. Disruption of this positively charged interface abolished binding to p75LNGFR but not activation of cognate Trk receptors or biological activity in Trk-expressing fibroblasts. Unexpectedly, loss of low-affinity binding in NT-4, but not in BDNF or NT-3, affected receptor activation and biological activity in neuronal cells co-expressing p75LNGFR and TrkB, suggesting a role for p75LNGFR in regulating biological responsiveness to NT-4. These findings reveal a possible mechanism of ligand discrimination by p75LNGFR and suggest this receptor may selectively modulate the biological actions of specific neurotrophin family members.
机译:神经营养蛋白通过与两类受体(酪氨酸激酶受体,Trk家族成员)和低亲和力神经营养蛋白受体p75LNGFR结合而介导其作用,后者尚未确定信号传导能力。尚不了解神经营养蛋白信号传导中对两组分受体系统的需求。使用定点诱变,我们在BDNF,NT-3和NT-4中鉴定出带正电荷的表面,介导与p75LNGFR的结合。发现位于裸露的发夹环中的NT-3中的Arg31和His33,以及NT-4中的Arg34和Arg36,对于与p75LNGFR的结合至关重要。然而,在BDNF中,在空间紧密但独特的环域中发现了对p75LNGFR结合至关重要的带正电荷的残基(Lys95,Lys96和Arg97)。使用NGF的坐标建立每种神经营养蛋白的模型。对它们各自的静电表面电势的分析揭示了每个神经营养蛋白中相似的带正电残基簇,但它们的精确空间位置不同。这种带正电的界面的破坏消除了与p75LNGFR的结合,但没有激活相关Trk受体的激活或表达Trk的成纤维细胞的生物学活性。出乎意料的是,NT-4(而不是BDNF或NT-3)中低亲和力结合的丧失影响了共表达p75LNGFR和TrkB的神经元细胞的受体激活和生物学活性,这表明p75LNGFR在调节对NT-的生物学反应中具有作用4。这些发现揭示了p75LNGFR对配体区分的可能机制,并暗示该受体可以选择性地调节特定神经营养蛋白家族成员的生物学作用。

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