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The scanning model for translation [ 15] posits that a translation process begins with the binding of 40S ribosomal complexes onto the 5'-cap structure of an mRNA.
The aim of this study was to determine the most effective dose of an intradiscal injection of rhBMP-7 in a spontaneous canine IVD degeneration model for translation into clinical application for patients with low back pain.
Thus, successful implementation of genetic data and decision support modules will provide a model for translation to a wide variety of healthcare systems with diverse EHR ecosystems and informatics capabilities.
When mapped against the critical success factors in the explanatory model for translation of children's health information in routine practice, it was clear that the context of clinical encounters needed to be strengthened further to enable forward planning to happen.
The current CCDS guidelines are based on principles of the scanning model for translation as discussed above, and they also include considerations for experimental evidence, community standards for start codon annotation, conservation of the start codon and the presence of protein domains or localization signals.
The scanning model for translation states that the small (40S) ribosomal subunit scans the mRNA starting from the 5′-end and then initiates from the first translation start codon (20), thereby making it possible that a uORF could be translated first, which could then subject the transcript to NMD.
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GMC and SAF have contributed to the field in elucidating mechanisms in Alzheimer's and developing models for translation.
These efforts not only further the goal of using fish disease models for translation to the clinic, but also provide proof-of-principle that synthetic lethal screens will be fruitful in the zebrafish system.
There might, however, be sufficient measurements offering surrogate information suitable to construct comparable input-output transfer function models for translation between in vitro and in vivo, as evidenced by equally valid alternative models for functional responses based on different kinds of molecular data, including mRNA, miRNA, protein, phosphoprotein, and protein activities.
Accordingly, we formulate and explore three alternative models for translation origin depending on whether or not amino acids specifically recognize cognate triplets: i) interaction of amino acids with codons (CRM), ii) interaction of amino acids with anticodons (ARM), and iii) no specific interactions between amino acids and any of the cognate triplets – the frozen-accident model (FAM).
With Urtica, a close correspondence of the daily cytokinin export from the root to the shoot and the nutrient (nitrogen) status of the roots has been reported (Beck 1999), and molecular models for translation of the nitrogen status of the root into the cytokinin signal were presented (Takei et al. 2004; Sakakibara et al. 2006).
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