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Protein biosynthesis / Molecular biology / Gene expression / Coding theory / Shine-Dalgarno sequence / Messenger RNA / Non-coding RNA / Block code / Ribosomal RNA / Biology / Genetics / RNA


Coding Theory Based Models for Protein Translation Initiation in Prokaryotic Organisms Elebeoba E. May a,∗ , Mladen A. Vouk b , Donald L. Bitzer b , David I. Rosnick b a Computational
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Document Date: 2011-12-13 18:50:13


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City

Albuquerque / /

Company

Sandia National Laboratories / GenBank / AU U CCU CCACU AG. / /

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Facility

North Carolina State University / /

IndustryTerm

strongest binding site / ribosome binding site / information processing capabilities / initiation site / ftp site / communication systems / cryptographic algorithms / information processing mechanisms / genetic systems / computing / information processing systems / well-defined encoding algorithm / chemical bonds / /

Organization

National Institute of Health / North Carolina State University / Raleigh / USA Science Department / /

Person

David I. Rosnick / Donald L. Bitzer / Hubert Yockey / Mladen A. Vouk / /

Position

block coding model for translation initiation / block code model for prokaryotic translation initiation / binary convolutional code model for the region / untranslated mRNA leader / block code model for the the translation initiation process / messenger / block coding model for the translation initiation system / Corresponding author / /

Product

K-12 / Pentax K-x Digital Camera / /

ProgrammingLanguage

EC / /

ProvinceOrState

New Mexico / North Carolina / /

Technology

genomics / chip design / genetic code / PERL / well-defined encoding algorithm / /

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