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Uga Stop Codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
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We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a.
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
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A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: pinterest.com
A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a.
Source: pinterest.com
We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: in.pinterest.com
We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: in.pinterest.com
A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a.
Source: pinterest.com
We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a.
Source: pinterest.com
We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: pinterest.com
A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. A UGA stop codon followed by the dinucleotide CU serves as a. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
Source: pinterest.com
In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins.
Source: pinterest.com
A UGA stop codon followed by the dinucleotide CU serves as a. A UGA stop codon followed by the dinucleotide CU serves as a. In many organisms the UGA stop codon is recoded to insert selenocysteine Sec into proteins. We hypothesized that the SECIS-element and the specific codon context synergize in controlling the effects of AG on stop codon.
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