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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Pseudophosphorylation of tau at serine 422 inhibits caspase cleavage: in vitro evidence and implications for tangle formation in vivo.
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Pseudophosphorylation of tau at serine 422 inhibits caspase cleavage: in vitro evidence and implications for tangle formation in vivo.

机译:tau在丝氨酸422处的伪磷酸化抑制了半胱天冬酶的裂解:体外证据及其对体内缠结形成的影响。

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摘要

The tangles of Alzheimer's disease (AD) are comprised of the tau protein displaying numerous alterations, including phosphorylation at serine 422 (S422) and truncation at aspartic acid 421 (D421). Truncation at the latter site appears to result from activation of caspases, a class of proteases that cleave specifically at aspartic acid residues. It has been proposed that phosphorylation at or near caspase cleavage sites could regulate the ability of the protease to cleave at those sites. Here, we use tau pseudophosphorylated at S422 (S422E) to examine the effects of tau phosphorylation on its cleavage by caspase 3. We find that S422E tau is more resistant to proteolysis by caspase 3 than non-pseudophosphorylated tau. Additionally, we use antibodies directed against the phosphorylation site and against the truncation epitope to assess the presence of these epitopes in neurofibrillary tangles in the aged human brain. We show that phosphorylation precedes truncation during tangle maturation. Moreover, the distribution of the two epitopes suggests that a significant length of time (perhaps as much as two decades) elapses between S422 phosphorylation and cleavage at D421. We further conclude that tau phosphorylation at S422 may be a protective mechanism that inhibits cleavage in vivo.
机译:阿尔茨海默氏病(AD)的缠结由显示出许多变化的tau蛋白组成,包括丝氨酸422的磷酸化(S422)和天冬氨酸421的截短(D421)。后一个位点的截短似乎是由于胱天蛋白酶的激活而引起的,胱天蛋白酶是一类在天冬氨酸残基上特异性裂解的蛋白酶。已经提出在半胱天冬酶裂解位点或附近的磷酸化可以调节蛋白酶在那些位点裂解的能力。在这里,我们使用在S422处被伪磷酸化的tau(S422E)来检查tau磷酸化对其对caspase 3裂解的影响。我们发现S422E tau对caspase 3的蛋白水解作用比对非pseudophosphorylated tau的抵抗力强。此外,我们使用针对磷酸化位点和截短表位的抗体来评估这些表位在老年人脑神经原纤维缠结中的存在。我们表明,在缠结成熟过程中磷酸化先于截短。此外,这两个表位的分布表明,在S422磷酸化和D421裂解之间有一段相当长的时间(可能长达二十年)。我们进一步得出结论,S422处的tau磷酸化可能是一种抑制体内裂解的保护性机制。

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