Nath Arnab Kumar, Roy Madhuparna, Dey Chinmay, Dey Abhishek, Dey Somdatta Ghosh
School of Chemical Sciences, Indian Association for the Cultivation of Science 2A & 2B, Raja S. C. Mullick Road, Jadavpur Kolkata 700032 India
Chem Sci. 2022 Nov 22;13(48):14305-14319. doi: 10.1039/d2sc05008k. eCollection 2022 Dec 14.
The colocalization of heme rich deposits in the senile plaque of Aβ in the cerebral cortex of the Alzheimer's disease (AD) brain along with altered heme homeostasis and heme deficiency symptoms in AD patients has invoked the association of heme in AD pathology. Heme bound Aβ complexes, depending on the concentration of the complex or peptide to heme ratio, exhibit an equilibrium between a high-spin mono-His bound peroxidase-type active site and a low-spin bis-His bound cytochrome b type active site. The high-spin heme-Aβ complex shows higher peroxidase activity than free heme, where compound I is the reactive oxidant. It is also capable of oxidizing neurotransmitters like serotonin in the presence of peroxide, owing to the formation of compound I. The low-spin bis-His heme-Aβ complex on the other hand shows enhanced peroxidase activity relative to high-spin heme-Aβ. It reacts with HO to produce two stable intermediates, compound 0 and compound I, which are characterized by absorption, EPR and resonance Raman spectroscopy. The stability of compound I of low-spin heme-Aβ is accountable for its enhanced peroxidase activity and oxidation of the neurotransmitter serotonin. The effect of the second sphere Tyr10 residue of Aβ on the formation and stability of the intermediates of low-spin heme-Aβ has also been investigated. The higher stability of compound I for low-spin heme-Aβ is likely due to H-bonding interactions involving Tyr10 in the distal pocket.
在阿尔茨海默病(AD)大脑的大脑皮质中,富含血红素的沉积物与Aβ老年斑共定位,同时AD患者体内血红素稳态改变及出现血红素缺乏症状,这引发了人们对血红素与AD病理学之间关联的探讨。血红素结合的Aβ复合物,根据复合物浓度或肽与血红素的比例,在高自旋单组氨酸结合的过氧化物酶型活性位点和低自旋双组氨酸结合的细胞色素b型活性位点之间呈现平衡。高自旋血红素 - Aβ复合物显示出比游离血红素更高的过氧化物酶活性,其中化合物I是反应性氧化剂。由于化合物I的形成,它在过氧化物存在下还能够氧化血清素等神经递质。另一方面,低自旋双组氨酸血红素 - Aβ复合物相对于高自旋血红素 - Aβ显示出增强的过氧化物酶活性。它与HO反应生成两种稳定的中间体,化合物0和化合物I,通过吸收光谱、电子顺磁共振光谱和共振拉曼光谱对其进行表征。低自旋血红素 - Aβ的化合物I的稳定性是其增强的过氧化物酶活性和神经递质血清素氧化的原因。还研究了Aβ的第二个球部Tyr10残基对低自旋血红素 - Aβ中间体形成和稳定性的影响。低自旋血红素 - Aβ的化合物I较高的稳定性可能是由于在远端口袋中涉及Tyr10的氢键相互作用。