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The instructions for how to create and run a living organism are
The instructions for how to create and run a living organism are

... Weissman and colleagues at the University of California, San Francisco, developed a technique, called ribosome profiling, in which they sequenced the mRNA chunks that ribosomes were latched onto and being decoded in a yeast cell. That gave them a snapshot of the genes being translated within a cell. ...
Name
Name

... Fill in the blank to complete each statement. 1. The process of making proteins is called protein ...
Molecular Genetics
Molecular Genetics

... encodes a particular polypeptide  Gene expression is the process in which proteins are assembled from the information contained in DNA ...
Bio 1 Unit Objectives Protein Synthesis Readings
Bio 1 Unit Objectives Protein Synthesis Readings

... A gene provides the information for making a specific protein Explain the “one-gene-one-polypeptide” hypothesis Trace the information flow from DNA to protein Describe how amino acids are coded ...
Protein Synthesis SG
Protein Synthesis SG

... Protein Synthesis Study Guide ...
Understanding Gene Expression Protein Synthesis
Understanding Gene Expression Protein Synthesis

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Notes Making Proteins
Notes Making Proteins

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Gene Polypeptide - Grayslake Central High School
Gene Polypeptide - Grayslake Central High School

... ...
messenger RNA (mRNA)
messenger RNA (mRNA)

... ...
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RNA-binding protein

RNA-binding proteins (often abbreviated as RBPs) are proteins that bind to the double or single stranded RNA in cells and participate in forming ribonucleoprotein complexes.RBPs contain various structural motifs, such as RNA recognition motif (RRM), dsRNA binding domain, zinc finger and others.They are cytoplasmic and nuclear proteins. However, since most mature RNA is exported from the nucleus relatively quickly, most RBPs in the nucleus exist as complexes of protein and pre-mRNA called heterogeneous ribonucleoprotein particles (hnRNPs).RBPs have crucial roles in various cellular processes such as: cellular function, transport and localization. They especially play a major role in post- transcriptional control of RNAs, such as: splicing, polyadenylation, mRNA stabilization, mRNA localization and translation. Eukaryotic cells encode diverse RBPs, approximately 500 genes, with unique RNA-binding activity and protein-protein interaction. During evolution, the diversity of RBPs greatly increased with the increase in the number of introns. Diversity enabled eukaryotic cells to utilize RNA exons in various arrangements, giving rise to a unique RNP (ribonucleoprotein) for each RNA. Although RBPs have a crucial role in post-transcriptional regulation in gene expression, relatively few RBPs have been studied systematically.
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