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![4 HOW GENES FUNCTION OBJECTIVES: By the end of this session the student should be able to: * Use the genetic code to translate coding sequences * Calculate the number of codons and amino acids from the number of bases * Name the main sites of ... 4 HOW GENES FUNCTION OBJECTIVES: By the end of this session the student should be able to: * Use the genetic code to translate coding sequences * Calculate the number of codons and amino acids from the number of bases * Name the main sites of ...](http://staff.um.edu.mt/acus1/4genfunction_files/image009.gif)
4 HOW GENES FUNCTION OBJECTIVES: By the end of this session the student should be able to: * Use the genetic code to translate coding sequences * Calculate the number of codons and amino acids from the number of bases * Name the main sites of ...
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Formation of a Combined H-DNA/Open TATA Box Structure in the Promoter Sequence of the Human Na,K-ATPase α2 Gene* - Journal of Biological Chemistry
The plant G box promoter sequence activates transcription in Saccharomyces cerevisiae and is bound in vitro by a yeast activity similar to GBF, the plant G box binding factor. - Abstract -
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Genetic Polymorphisms in the TATA Box and Upstream Phenobarbital-Responsive Enhancer Module of the UGT1A1 Promoter Have Combined Effects on UDP-Glucuronosyltransferase 1A1 Transcription Mediated by Constitutive Androstane Receptor, Pregnane X Receptor ...
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Comparison of a simple eukaryotic promoter and an extensively diversified metazoan regulatory module | Learn Science at Scitable
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