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Journal ArticleDOI

Tyrosine residues near the FAD binding site are critical for FAD binding and for the maintenance of the stable and active conformation of rat monoamine oxidase A.

Jichun Ma, +1 more
- 01 Jan 2002 - 
- Vol. 131, Iss: 1, pp 107-111
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TLDR
It is concluded that tyrosine residues near Cys-406 may be form a pocket to facilitates FAD incorporation, the catalytic center, and a stable conformation, probably through interactions among the aromatic rings of the tyosine residues and FAD.
Abstract
Monoamine oxidase is a flavin-containing enzyme located at the mitochondrial outer membrane that catalyzes the oxidative deamination of amines. To investigate the role of tyrosine residues near the FAD-binding site, Cys-406, of monoamine oxidase A, the tyrosine residues at posiyions 402, 407, and 410 were indurdually replaced with alanine or phenylalanine and the effects of the mutations on catalytic activity, FAD binding, and enzyme structure were examined. Half or fewer of the mutant proteins incorporated FAD. The mutation of Tyr-407 to alanine led to an almost completely loss of catalytic activity for serotonin, PEA, tyramine, and tryptamine. A substantial decrease in the catalytic activity was also observed with the enzymes mutated at Tyr-402 and Tyr-410 to alanine, although the effect of the latter mutation was much less. All these mutants were sensitive to trypsin treatment of the purified enzyme, while the wild type enzyme was resistant to treatment. On the other hand, substitution of Tyr-402 or Tyr-407 with phenylalanine had little effect on these properties. Taken together, we conclude that tyrosine residues near Cys-406 may be form a pocket to facilitates FAD incorporation, the catalytic center, and a stable conformation, probably through interactions among the aromatic rings of the tyrosine residues and FAD.

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Structure of human monoamine oxidase A at 2.2-A resolution: The control of opening the entry for substrates/inhibitors

TL;DR: The results suggest that the flexibility of loop 108–118, facilitated by anchoring the enzyme into the membrane, is essential for controlling substrate access to the active site.
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Structure of Rat Monoamine Oxidase A and Its Specific Recognitions for Substrates and Inhibitors

TL;DR: The crystal structure of rat MAOA complexed with the specific inhibitor, clorgyline, at 3.2A resolution is determined and it is presented that MAOA has a transmembrane helix at the C-terminal region, which is the first crystalructure of membrane protein with an isolated trans Membranehelix.
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TL;DR: It is suggested that MAOA expression promotes PCa development by increasing cell proliferation and CSCs and highlights the potential use of MAOA inhibitors for the treatment of PCa.
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In Vitro and in Silico Human Monoamine Oxidase Inhibitory Potential of Anthraquinones, Naphthopyrones, and Naphthalenic Lactones from Cassia obtusifolia Linn Seeds.

TL;DR: It is demonstrated that Cassia seed extract and its constituents inhibit hMAO-A enzyme activity with high selectivity and suggest that they could play a preventive role in neurodegenerative diseases, especially anxiety and depression.
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