Campbell Biology, Books a la Carte Plus Mastering Biology with eText -- Access Card Package (10th Edition)
10th Edition
ISBN: 9780133922851
Author: Jane B. Reece, Lisa A. Urry, Michael L. Cain, Steven A. Wasserman, Peter V. Minorsky, Robert B. Jackson
Publisher: PEARSON
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Textbook Question
Chapter 6.4, Problem 3CC
WHAT IF? Ø Imagine a protein that functions in the ER but requires modification in the Golgi apparatus before it can achieve that function. Describe the protein's path through the cell, starting with the mRNA molecule that specifies the protein.
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WHAT IF? Imagine a protein that functions in the ERbut requires modification in the Golgi apparatus beforeit can achieve that function. Describe the protein’s paththrough the cell, starting with the mRNA molecule thatspecifies the protein.
Order+the+following+of+protein+sentesis+sequence+from+earliest: (a)tRNA molecule bring specific amino acids to he mRNA molecule. b)mRNA nucleotides join with exposed DNA bases and form a molecule of mRNA.(c)The two stands of a DNA molecule separate. (d)Peptide bonds form between the amino acids. (e)the mRNA molecule leave the nucleus. (f) a ribosome attached to the mRNA molecule.
is this correct? How to know mRNA and tRNA properly?
Chapter 6 Solutions
Campbell Biology, Books a la Carte Plus Mastering Biology with eText -- Access Card Package (10th Edition)
Ch. 6.1 - Prob. 1CCCh. 6.1 - Prob. 2CCCh. 6.2 - Briefly describe the structure and function of the...Ch. 6.2 - Prob. 2CCCh. 6.3 - What role do ribosomes play in carrying out...Ch. 6.3 - Describe the molecular composition of nucleoli and...Ch. 6.3 - Prob. 3CCCh. 6.4 - Describe the structural and functional...Ch. 6.4 - Describe how transport vesicles integrate the...Ch. 6.4 - WHAT IF? Imagine a protein that functions in the...
Ch. 6.5 - Describe two characteristics shared by...Ch. 6.5 - Prob. 2CCCh. 6.5 - Prob. 3CCCh. 6.6 - Prob. 1CCCh. 6.6 - WHAT IF? Males afflicted with Kartagener's...Ch. 6.7 - In what way are the cells of plants and animals...Ch. 6.7 - Prob. 2CCCh. 6.7 - MAKE CONNECTIONS The polypeptide chain that makes...Ch. 6 - Prob. 6.1CRCh. 6 - Explain how the compartmental organization of a...Ch. 6 - Describe the relationship between the nucleus and...Ch. 6 - Describe the key role played by transport vesicles...Ch. 6 - Prob. 6.5CRCh. 6 - Describe the role of motor proteins inside the...Ch. 6 - Prob. 6.7CRCh. 6 - Which structure is not part of the endomembrane...Ch. 6 - Prob. 2TYUCh. 6 - Which of the following is present in a prokaryotic...Ch. 6 - Prob. 4TYUCh. 6 - Prob. 5TYUCh. 6 - Prob. 6TYUCh. 6 - Prob. 7TYUCh. 6 - Prob. 8TYUCh. 6 - EVOLUTION CONNECTION (a) What cell structures best...Ch. 6 - SCIENTIFIC INQUIRY Imagine protein X, destined to...Ch. 6 - WRITE ABOUT A THEME: ORGANIZATION Considering some...Ch. 6 - SYNTHESIZE YOUR KNOWLEDGE The cells in this SEM...
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- Pls Provide what is being asked in the picture givenarrow_forwardSAY IT WITH DNA: PROTEIN SYNTHESIS WORKSHEET: Practice Pays Having studied the process by which DNA directs the synthesis of proteins, you should be ready to decode some DNA "secret" messages. To do this, you must follow the procedure of protein synthesis as this is taking place right now in your cells; no short cuts! Practice these steps by following and finishing the partially solved message below. STEP 1: "Build" the mRNA molecule, matching the RNA nucleotides to the DNA nucleotides properly, letter by letter. (For purposes of simplicity, it will be assumed that this mRNA is bacterial; there are no introns to cut out!) STEP 2: Figure out the tRNA triplets (codons) which would fit the mRNA triplets (letter by letter). STEP 3: Look up each tRNA codon in the tRNA Dictionary (below), and find the corresponding symbol and amino acid abbreviation for that codon. Record that one-letter symbol (and its amino acid) below each codon. "Spc" = "space". If you have done this correctly, the…arrow_forwardGenetic expression involves transcription and translation. Match the structure or molecule to the step site where amino acid combines with tRNA intron sequences are removed and exons are combined together makes RNA more stable in the cytoplasm region of DNA with sequences that combine with RNA polymerase transcribed strand that will go on to translation connects amino acid to polypeptide chain and leaves tRNA site where tRNA with amino acid enters the ribosome recognized by the protein synthesis machinery enzyme that connects RNA nucleotides to DNA template part of tRNA with nucleotides complementary to mRNA 1. peptide bond 2. 3. antisense strand 4. anticodon loop 5. RNA polymerase 5' cap 6. A site 8. 7. splicing 9. promoter region acceptor stem 10. poly-A tailarrow_forward
- Explain all options. Which option is correct and why ?? Asaparrow_forwardasap please A partially filled diagram of eukaryotic gene structure is shown below. Label the following additional elements in the empty boxes. One label must be used twice: a) 3'UTR, b) 5'UTR, c) exon, d) intron, e) promoterarrow_forwardGive typing answer with explanation and conclusion to all parts Consider the following DNA mRNA sequence: 5’-ACTGATCCATGCCAGGGGTTTTCAACTAAAATGAAA-3’ a) What is the template sequence this mRNA was transcribed from? Include 5’ and 3’ labels. b) Based on this sequence, what you predict would be the resulting peptide sequence from it. c) In examining this sequence what is the proper reading frame of the open reading frame? (+1, +2, +3, -1, -2, or -3). d) What would you predict the peptide sequence to be if there was the following mutation that led to a base change: 5’-ACTGATGCATGCCAGGGGTTTTCAACTAAAATGAAA-3’arrow_forward
- . What is the minumum number of tRNA molecules that a cell must contain in order to translate all 61 sense codons?arrow_forwardAKS 5c1: Which explanation accurately describes the model below? * DNA MRNA Transcription Mature MRNA Nucleus Transport to cytoplasm for protein synthesis (ranstation MANA Cell membrane This model represents protein synthesis since the tRNA is delivering amino acids to form a polypeptide chain that will form a protein. This model represents protein synthesis since the tRNA is delivering lipids which will be used to bond proteins to form an enzyme. This model represents protein synthesis because DNA is being copied during transcription in the nucleus before leaving the nucleus. This model represents protein synthesis because MRNA is coiling to form a new protein molecule in the cytoplasm.arrow_forwardDirections: Fill in the flow chart below using the following words: amino acids, ribosome, tRNA anticodons, nuclear pore, mRNA, transcription, translation, mRNA codons, peptide bonds, nucleus.arrow_forward
- AKS 5c1: Which of the following models BEST represents protein synthesis? * O MRNA (UAC AAA) - DNA (ATG TTT) Amino Acid Sequence (Lysine-Alanine) - Amino Acid Sequence (Methionine- DNA (TAC AAA) RNA (AUG UUU) Phenylalanine) RNA (AUG UUU) DNA (TAC Amino Acid Sequence (Methionine-Phenylalanine) AAA) DNA (AUG UUU) RNA (TAC AAA) Phenylalanine) - Amino Acid Sequence (Methionine- AKS 5c1: Using codon wheel below, which of the models correctly represents the usage of the base pairing rule, the correct sequence of events, and creation of proteins at the ribosomes? *arrow_forwardWhat are the functional consequences of this deletion for lilP mRNA transcription and translation? (100 words max.)arrow_forwardBONUS: In Bacteria, recognizes the Ribosomal Binding site on mRNA and catalyzes formation of peptide bonds during translation (answers must be in correct order) O aminoacyl tRNAses; aminoacyl TRNA synthetases ribosomal protein translation factors; ribosomal protein initiation factors O helicase; gyrase O 165 rRNA; 23S rRNAarrow_forward
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