Ataxin active site determination using spectral distribution of electron ion interaction potentials of amino acids.

Ataxia is a genetic neurological disorder characterised by a neurodegenerative process affecting a motor cortex responsible for balance and coordination. Recently several genes that cause autosomal dominant ataxia development were identified. These abnormal genes share a common ability to produce ab...

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Publicado en:Medical & Biological Engineering & Computing Vol. 48; no. 4; pp. 303 - 310
Autores principales: Pirogova E, Vojisavljevic V, Hernández Cáceres JL, Cosic I, Pirogova, E, Vojisavljevic, V, Cáceres, J L Hernández, Cosic, I
Formato: Journal Article
Publicado: Springer Nature Apr2010
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Apr2010
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      pub: Springer Nature
      place: New York, New York
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        atl: Ataxin active site determination using spectral distribution of electron ion interaction potentials of amino acids.
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        au:
          Pirogova E
          Vojisavljevic V
          Hernández Cáceres JL
          Cosic I
          Pirogova, E
          Vojisavljevic, V
          Cáceres, J L Hernández
          Cosic, I
        affil: School of Electrical and Computer Engineering, RMIT University, Melbourne, VIC, Australia
      sug:
        subj:
          Ataxia Metabolism
          Models, Theoretical
          Nerve Tissue Proteins
          Proteins
          Amino Acids
          Nerve Tissue Proteins Physiology
          Proteins Physiology
          Signal Processing, Computer Assisted
          Biochemical Phenomena
      ab: Ataxia is a genetic neurological disorder characterised by a neurodegenerative process affecting a motor cortex responsible for balance and coordination. Recently several genes that cause autosomal dominant ataxia development were identified. These abnormal genes share a common ability to produce abnormal ataxin proteins that can affect nerve cells in the cerebellum and spinal cord. Here, using the Resonant Recognition Model (RRM) based on signal processing, we analysed ataxin proteins and identified the characteristic features corresponding to their biological activities. The RRM is a physico-mathematical model developed for analysis of protein interactions. By incorporating Smoothed Pseudo Wigner-Ville distribution (SPWV) in the RRM, we can define the active regions along the protein molecule. The results showed that our computational predictions correspond closely with the experimentally identified locations of the active/binding sites for ataxin-1 and ataxin-3 protein groups. The results obtained provide a valuable insight into the functional performance of ataxin proteins.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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