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  • ...The stabilization of p53, leads to p53- mediated apoptotic cell death. (Yamada et al, Goto et al)</td> ...ite of the protein by growing the cells in media supplemented with copper [Yamada et al].<sup>4</sup> Investigation of the relationship between the presence
    12 KB (1,736 words) - 03:29, 2 November 2017
  • ...was detected binding on the surface of PHA granules (Pötter et al, 2002; Yamada et al, 2013). ...orted to autoregulate the expression of itself by binding on its promoter (Yamada et al, 2013). This autoregulation system guarantees the efficient expressio
    3 KB (405 words) - 22:47, 14 October 2018
  • ...ol monooxygenase (IsoMo) from <em>Pseudomonas putida</em>IE27, reported by Yamada, Okada, Yoshida & Nagasawa in 2008, as “Iso” (GenBank access code: BAF6 The isoeugenol monooxygenase gene selected is reported by Yamada, Yokada, Oshida & Nagasawa (2008), as “Iso” (GenBank access code: BAF62
    6 KB (917 words) - 03:19, 14 October 2022
  • Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4 Yamada, H., Suzuki, T., Terada, K., Takei, K., Ishikawa, K., Miwa, K., Yamashino,
    13 KB (1,956 words) - 17:59, 1 November 2017
  • Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4 Yamada, H., Suzuki, T., Terada, K., Takei, K., Ishikawa, K., Miwa, K., Yamashino,
    2 KB (274 words) - 17:59, 1 November 2017
  • Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4 Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4
    8 KB (1,230 words) - 18:24, 1 November 2017
  • Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4 Yamada, H., Suzuki, T., Terada, K., Takei, K., Ishikawa, K., Miwa, K., Yamashino,
    13 KB (1,999 words) - 17:10, 1 November 2017
  • Suzuki, T., Miwa, K., Ishikawa, K., Yamada, H., Aiba, H. and Mizuno, T. (2001) The Arabidopsis Sensor His-kinase, AHK4 Yamada, H., Suzuki, T., Terada, K., Takei, K., Ishikawa, K., Miwa, K., Yamashino,
    2 KB (343 words) - 18:00, 1 November 2017
  • ...e Malonic Semiadelhyde to form metabolite acetyl-CoA, CO2, NADH, and NADPH(Yamada and Jakoby). E.W. Yamada and W.B. Jakoby. “Aldehyde Oxidation V. Direct Conversion of Malonic Semi
    990 B (127 words) - 07:02, 19 October 2017
  • 1. T. Yamada et al. "A peptide fragment of azurin induces a p53-mediated cell cycle arre 2. T. Yamada et al."p28, a first in class peptide inhibitor of cop1 binding to p53." Bri
    4 KB (533 words) - 13:15, 1 November 2017
  • ...was detected binding on the surface of PHA granules (Pötter et al, 2002; Yamada et al, 2013). Based on the binding behaviours and following influence, it w ...ported to autoregulate the expression of itself by binding on its promoter(Yamada et al, 2013).This autoregulation system guarantees the efficient expression
    6 KB (984 words) - 01:11, 18 October 2018
  • ...was detected binding on the surface of PHA granules (Pötter et al, 2002; Yamada et al, 2013). Based on the binding behaviours and following influence, it w ...ported to autoregulate the expression of itself by binding on its promoter(Yamada et al, 2013).This autoregulation system guarantees the efficient expression
    6 KB (998 words) - 01:12, 18 October 2018
  • ...was detected binding on the surface of PHA granules (Pötter et al, 2002; Yamada et al, 2013). Based on the binding behaviours and following influence, it w ...ported to autoregulate the expression of itself by binding on its promoter(Yamada et al, 2013).This autoregulation system guarantees the efficient expression
    6 KB (1,027 words) - 01:12, 18 October 2018
  • Yamada, M. & Saier Jr, M. H. Yamada, Mamoru, and Milton H. Saier Jr. "Glucitol-specific enzymes of the phosphot
    1 KB (145 words) - 22:35, 11 October 2022
  • ...nase (IsoMo) is an enzyme of <em>Pseudomonas putida</em> IE27, reported by Yamada, Okada, Yoshida & Nagasawa [1] (gene Iso), and has an approximate size of 5 <p align = "justify">[1] Yamada, M., Okada, Y., Yoshida, T., & Nagasawa, T. (2008). Vanillin production usi
    6 KB (953 words) - 03:14, 10 October 2022
  • ...tains the coding sequence of Isoeugenol monooxygenase (IsoMo), reported by Yamada, Okada, Yoshida & Nagasawa [1] (gene Iso), and has an approximate size of 5 <p align = "justify">[1] Yamada, M., Okada, Y., Yoshida, T., & Nagasawa, T. (2008). Vanillin production usi
    5 KB (801 words) - 08:49, 12 October 2022
  • ...by codon optimization, from <em>Pseudomonas putida</em> IE27, reported by Yamada, Okada, Yoshida & Nagasawa in 2008 [1], Isoeugenol monooxygenase (IsoMo), t <p align = "justify">[1] Yamada, M., Okada, Y., Yoshida, T., & Nagasawa, T. (2008). Vanillin production usi
    10 KB (1,597 words) - 08:59, 12 October 2022
  • Nithianantham S, Xu M, Yamada M, Ikegami A, Shoham M, Han YW. Crystal structure of FadA adhesin from Fuso [2]Nithianantham S, Xu M, Yamada M, Ikegami A, Shoham M, Han YW. Crystal structure of FadA adhesin from Fuso
    15 KB (2,267 words) - 15:55, 12 October 2023
  • AOs were first discovered by Yamada et al [1], where fungi formed AOs in mycelium when grown with mono- or diam <li>Yamada H, Adachi O, Ogata K. Amine oxidases of microorganisms: part I. Formati
    5 KB (653 words) - 12:45, 10 October 2023
  • peroxide. AOs were first discovered by Yamada et al [1], where fungi formed AOs in mycelium when grown with <li>Yamada H, Adachi O, Ogata K. Amine oxidases of microorganisms: part I. Formation o
    8 KB (1,107 words) - 08:03, 11 October 2023

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