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The 11th lecture in molecular biology
The 11th lecture in molecular biology

... represent 5%of total RNA non-coding RNAs are transfer RNA (tRNA ) and ribosomal RNA (rRNA), both of which are involved in the process of translation. Structure of m RNA: Messenger RNA carries information from DNA to the ribosome, the sites of protein synthesis (translation) in the cell. The coding s ...
Evidence that the Localization of the Elongation Factor
Evidence that the Localization of the Elongation Factor

... wrapped around a protein octamer composed of pairs of each of the four core histone proteins (Luger et al. 1997). In addition to directing the condensation of DNA, histone proteins also play crucial and active roles in the regulation of cellular processes that use chromatin as their substrate (Luger ...
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... A) Nonsense  mutation;  will.   B) Missense  mutation;  will  not.   C) Nonsense  mutation;  will.   D) Missense  mutation;  will  not.   E) Silent  mutation;  will  not.   ...
Molecular genetics (cloning)
Molecular genetics (cloning)

... E. Börje Lindström ...
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102Chapter 10 - Central Dogma

... A) Regulatory proteins • Assist/block binding of RNA polymerase B) Chromosome condensation (tightly packed areas) • RNA polymerase can’t access regions C) Chromosome inactivity (XX vs. XY chromosomes) ...
GZMB- Kolloquium - Georg-August
GZMB- Kolloquium - Georg-August

... coupling site in the bioenergetics of prokaryotes ...
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... • Comprehensive curricula for inquiry-based investigations • Compatible with 50 minute class periods • Serves entire class of 32 students (up to 4 students per group) • Cost-effective • Success in student’s hands • Safe • Striking results! ...
DNA RNA PSyn notes
DNA RNA PSyn notes

... 1. Distinguish between RNA and DNA in as many ways as you possibly can. 2. Draw a nucleotide and then draw a 5 nucleotide linear sequence of DNA. 3. Distinguish between mRNA, tRNA and rRNA in protein synthesis. 4. Given the following nitrogen base sequence in a molecule of DNA: AATCGTTCGTTAGCGCCA (t ...
Example: search for regulatory binding sites
Example: search for regulatory binding sites

... the so-called promoter region (TATA-box; or -10, -35) – Regulated by some (regulatory) proteins on DNA “near” the promoter region. – These binding sites on DNA are often “similar” in composition. Enhancers and repressors ...
Genetics - Mr. Coleman's Biology
Genetics - Mr. Coleman's Biology

... A mutation is a change in the order of the nitrogenous bases of DNA. Some mutations are harmless, some are damaging to the organism, and some are fatal (causing the organism not to develop). ...
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Streptavidin is a small bacterial protein that binds

... that allows the cells to survive under certain conditions, it can be maintained in the cells for many generations (as long as in the presence of such selective conditions). Moreover, DNA sequences can also be integrated into the genome by using homologous recombination. In higher eukaryotic cells (s ...
Medical School Biochemistry - Fall 2002
Medical School Biochemistry - Fall 2002

... Phosphorylation of threonine, serine or tyrosine residues by kinases can result in activation of an enzyme. ...
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1. Bacterial genomes

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THE lac OPERON

... A small amount of a sugar allolactose is formed within the bacterial cell. This fits onto the repressor protein at another active site (allosteric site) This causes the repressor protein to change its shape (a conformational change). It can no longer sit on the operator site. RNA polymerase can now ...
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Biology 1 Notes Chapter 12 - DNA and RNA Prentice Hall
Biology 1 Notes Chapter 12 - DNA and RNA Prentice Hall

... polymerase binds to the DNA at a promoter site. Promoters are signals in the DNA strand (a certain sequence of bases) that indicate to the enzyme where to bind to make RNA. ...
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INTRODUCTION

... well as the nontemplate strand  The base sequence is identical to the RNA transcript  Except for the substitution of uracil in RNA for thymine in DNA ...
28th Annual San Antonio Breast Cancer Symposium—Abstract #310
28th Annual San Antonio Breast Cancer Symposium—Abstract #310

... Department of Biochemistry, Royal Marsden Hospital, London, UK Introduction. High throughput RT-PCR technology can be used to profile gene expression in fixed paraffin-embedded (FPE) tumor specimens and predict distant recurrence (Paik et al. NEJM [2004]). However, in many studies, limited amounts o ...
Replication, Transcription, and Translation
Replication, Transcription, and Translation

... DNA carries information that can be used to construct the proteins which form structures and regulate the body’s activities. • Protein synthesis involves two processes: transcription and translation. • In transcription the DNA message is converted into an RNA molecule. • In translation the RNA mess ...
Lecture 25 student powerpoint
Lecture 25 student powerpoint

... 1. Genome sequencing provides a map to genes but does not reveal their function. Comparative genome analysis: a. Compares genes with low evolutionary rate and high functional significance. b. Pseudogenes, which are free to mutate, are used to calculate expected mutation rates. c. Regions of high seq ...
Protein Synthesis
Protein Synthesis

... The mRNA then enters the cytoplasm and attaches to a ribosome. Translation begins at AUG, the start codon. Each transfer RNA has an anticodon whose bases are complementary to a codon on the mRNA strand. The ribosome positions the start codon to attract its anticodon, which is part of the tRNA that b ...
DNA, RNA, Protein Synthesis and DNA Replication
DNA, RNA, Protein Synthesis and DNA Replication

... protein. A triplet of N-bases is called CODON. r-RNA is formed inside nucleolus and combines with ribosomal proteins to form 2 halves of Ribosomes called larger and smaller subunits. t-RNA picks up specific amino-acid from cytoplasm and carries it to ribosomal—m-RNA complex. A triplet of N-bases is ...
Protein Synthesis Reading
Protein Synthesis Reading

... proteins that will be made for your body are determined by the sequence of DNA in the nucleus. Chromosomes are composed of genes, which is a segment of DNA that codes for a particular protein, which in turn codes for a trait. Hence you hear it commonly referred to as the gene for baldness or the gen ...
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Transcriptional regulation

In molecular biology and genetics, transcriptional regulation is the means by which a cell regulates the conversion of DNA to RNA (transcription), thereby orchestrating gene activity. A single gene can be regulated in a range of ways, from altering the number of copies of RNA that are transcribed, to the temporal control of when the gene is transcribed. This control allows the cell or organism to respond to a variety of intra- and extracellular signals and thus mount a response. Some examples of this include producing the mRNA that encode enzymes to adapt to a change in a food source, producing the gene products involved in cell cycle specific activities, and producing the gene products responsible for cellular differentiation in higher eukaryotes.The regulation of transcription is a vital process in all living organisms. It is orchestrated by transcription factors and other proteins working in concert to finely tune the amount of RNA being produced through a variety of mechanisms. Prokaryotic organisms and eukaryotic organisms have very different strategies of accomplishing control over transcription, but some important features remain conserved between the two. Most importantly is the idea of combinatorial control, which is that any given gene is likely controlled by a specific combination of factors to control transcription. In a hypothetical example, the factors A and B might regulate a distinct set of genes from the combination of factors A and C. This combinatorial nature extends to complexes of far more than two proteins, and allows a very small subset (less than 10%) of the genome to control the transcriptional program of the entire cell.
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