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1
A metabolic reaction-diffusion model for PKCα translocation via PIP2 hydrolysis in an endothelial cell
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A metabolic reaction-diffusion model for PKCα translocation via PIP2 hydrolysis in an endothelial cell

Sera, Toshihiro ; Higa, Shiro ; Zeshu, Yan ; Takahi, Kyosuke ; Miyamoto, Satoshi ; Fujiwara, Tetsuya ; Yokota, Hideo ; Sasaki, Saori ; Kudo, Susumu

Biochemical journal, 2020-10, Vol.477 (20), p.4071-4084 [Periódico revisado por pares]

England

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2
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Structural features which make oligopeptides susceptible to hydrolysis by recombinant endooligopeptidase 24.15 (EC 3.4.24.15)

Antonio Carlos Martins de Camargo M D Gomes; A P Reichl; Emer Suavinho Ferro; S Jacchieri; L Juliano

Biochemical Journal Colchester v. 324, pt. 2, p. 517-522, 1997

Colchester 1997

Item não circula. Consulte sua biblioteca.(Acessar)

3
Structure of the γ-ε complex of cyanobacterial F 1 -ATPase reveals a suppression mechanism of the γ subunit on ATP hydrolysis in phototrophs
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Structure of the γ-ε complex of cyanobacterial F 1 -ATPase reveals a suppression mechanism of the γ subunit on ATP hydrolysis in phototrophs

Murakami, Satoshi ; Kondo, Kumiko ; Katayama, Shinya ; Hara, Satoshi ; Sunamura, Ei-Ichiro ; Yamashita, Eiki ; Groth, Georg ; Hisabori, Toru

Biochemical journal, 2018-09, Vol.475 (18), p.2925 [Periódico revisado por pares]

England

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4
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The role of 'Tyr POT. 605' and 'Ala POT. 607' of thimet oligopeptidase and 'Tyr POT. 606' and 'Gly POT. 608' of neurolysin in substrate hydrolysis and inhibitor binding

Maurício F. M. Machado Vanessa Rioli; Fernanda M Dalios; Leandro M Castro; Maria A Juliano; Ivarne L Tersariol; Emer Suavinho Ferro; Luiz Juliano; Vitor Oliveira

Biochemical Journal London v. 404, n. 2, p. 279-288, 2007

London 2007

Item não circula. Consulte sua biblioteca.(Acessar)

5
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The role of 'Tyr POT. 605' and 'Ala POT. 607' of thimet oligopeptidase and 'Tyr POT. 606' and 'Gly POT. 608' of neurolysin in substrate hydrolysis and inhibitor binding

Maurício F. M. Machado Vanessa Rioli; Fernanda M Dalios; Leandro M Castro; Maria A Juliano; Ivarne L Tersariol; Emer Suavinho Ferro; Luiz Juliano; Vitor Oliveira

Biochemical Journal London v. 404, n. 2, p. 279-288, 2007

London 2007

Item não circula. Consulte sua biblioteca.(Acessar)

6
Kinetic characterization of human butyrylcholinesterase mutants for the hydrolysis of cocaethylene
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Kinetic characterization of human butyrylcholinesterase mutants for the hydrolysis of cocaethylene

Hou, Shurong ; Zhan, Max ; Zheng, Xirong ; Zhan, Chang-Guo ; Zheng, Fang

Biochemical journal, 2014-06, Vol.460 (3), p.447-457 [Periódico revisado por pares]

England

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7
Substrate-assisted mechanism of catalytic hydrolysis of misaminoacylated tRNA required for protein synthesis fidelity
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Substrate-assisted mechanism of catalytic hydrolysis of misaminoacylated tRNA required for protein synthesis fidelity

Ilchenko, Mykola M ; Rybak, Mariia Yu ; Rayevsky, Alex V ; Kovalenko, Oksana P ; Dubey, Igor Ya ; Tukalo, Michael A

Biochemical journal, 2019-02, Vol.476 (4), p.719-732 [Periódico revisado por pares]

England

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8
The laterally acquired GH5 ZgEngAGH5_4 from the marine bacterium Zobellia galactanivorans is dedicated to hemicellulose hydrolysis
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The laterally acquired GH5 ZgEngAGH5_4 from the marine bacterium Zobellia galactanivorans is dedicated to hemicellulose hydrolysis

Dorival, Jonathan ; Ruppert, Sophie ; Gunnoo, Melissa ; Orłowski, Adam ; Chapelais-Baron, Maylis ; Dabin, Jérôme ; Labourel, Aurore ; Thompson, Damien ; Michel, Gurvan ; Czjzek, Mirjam ; Genicot, Sabine

Biochemical journal, 2018-11, Vol.475 (22), p.3609-3628 [Periódico revisado por pares]

Portland Press

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9
Structural and biochemical characterization of the catalytic domains of GdpP reveals a unified hydrolysis mechanism for the DHH/DHHA1 phosphodiesterase
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Structural and biochemical characterization of the catalytic domains of GdpP reveals a unified hydrolysis mechanism for the DHH/DHHA1 phosphodiesterase

Wang, Feng ; He, Qing ; Su, Kaixuan ; Wei, Tiandi ; Xu, Sujuan ; Gu, Lichuan

Biochemical journal, 2018-01, Vol.475 (1), p.191-205 [Periódico revisado por pares]

England

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10
Structure of the γ–ε complex of cyanobacterial F1-ATPase reveals a suppression mechanism of the γ subunit on ATP hydrolysis in phototrophs
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Structure of the γ–ε complex of cyanobacterial F1-ATPase reveals a suppression mechanism of the γ subunit on ATP hydrolysis in phototrophs

Murakami, Satoshi ; Kondo, Kumiko ; Katayama, Shinya ; Hara, Satoshi ; Sunamura, Ei-ichiro ; Yamashita, Eiki ; Groth, Georg ; Hisabori, Toru

Biochemical journal, 2018-09, Vol.475 (18), p.2925-2939 [Periódico revisado por pares]

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Deste Autor:

  1. Ferro, E
  2. Juliano, L
  3. Rioli, V
  4. Castro, L
  5. Machado, M

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