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The biology of the cellular prion protein.

机译:细胞病毒蛋白的生物学特性。

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摘要

Prions are the etiological agents for infectious degenerative encephalopaties acting by inducing conformational changes in the cellular prion protein (PrPc), which is a cell membrane GPI anchored glycoprotein. Besides its conservation among species and expression in most tissues, and in particular, in high levels in the nervous system, the role for cellular prion protein remained obscure for some time. Initial skepticism about such a role was mainly due to the absence of a gross phenotype alteration in cellular prion protein null mice. In the last few years, some possible biological functions for cellular prion protein have been described. Copper binds to the molecule and the resulting complex may be responsible for cell protection against oxidative stress. Cellular prion protein is also a high-affinity ligand for laminin, and induces neuronal cell adhesion, neurite extension and maintenance. The binding site resides in a carboxy-terminal peptide of the gamma-1 chain, which is very conserved among all laminin types, indicating that this interaction may be relevant in other tissues besides the brain. Moreover, cellular prion protein association with a peptide that mimics a putative ligand at the cell surface, p66, triggers neuroprotective signals through a cAMP/PKA-dependent pathway. Since PrPc recycles from membrane to an intracellular compartment, which is induced by copper binding, it is also possible that the internalization mechanism allows switching off elicited signals.
机译:ions病毒是通过引起细胞病毒蛋白(PrPc)的构象变化而起作用的传染性变性脑病的病原体,细胞ion病毒蛋白是细胞膜GPI锚定的糖蛋白。除了其在物种之间的保守性以及在大多数组织中,特别是在神经系统中的高水平表达中,细胞ion病毒蛋白的作用在一段时间内仍然不清楚。最初对这种作用的怀疑主要是由于在细胞病毒蛋白缺失小鼠中没有明显的表型改变。在最近几年中,已经描述了细胞病毒蛋白的一些可能的生物学功能。铜与分子结合,所得的复合物可能负责保护细胞免受氧化应激。细胞病毒蛋白也是层粘连蛋白的高亲和力配体,并诱导神经元细胞粘附,神经突延伸和维持。结合位点位于γ-1链的羧基末端肽中,该序列在所有层粘连蛋白类型中都非常保守,这表明这种相互作用可能与大脑以外的其他组织有关。此外,细胞病毒蛋白与模拟细胞表面假定配体的肽p66结合,通过cAMP / PKA依赖性途径触发神经保护信号。由于PrPc由铜结合而从膜循环到细胞内区室,因此内在化机制也有可能关闭引发的信号。

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