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- ty of Indianapolis : 20202 X ace.uindy.edu/portal/site/202020-BIOL-104-07/tool/2e4f1021-614d-4fae-83d6-ff99ca3767e0/jsf/delivery/beginTakingAssessment M Gmail YouTube Maps A ApneTV Home of H... What is the first step in protein synthesis? O A. making an RNA copy of the DNA within the nucleus B. making a sequence of amino acids O C. forming peptide bonds between amino acids OD. making a copy of RNA with DNA outside the nucleus Reset SelectionBased on sequences A,B,C. Provide an anticodon sequence that would build this protein. Sequence ATCTTCCCTCCTAAACGTTCAACCGGTTCTTAATCCGCCGCCAGGGCCCCGCCCCTCAGAAGTTGGTSequence BTCAGACGTTTTTGCCCCGTAACAACTTGTTACAACATGGTCATAAACGTCAGAGATGGTCAATCTCTTAATGACTSequence CTACAAACATGTAAACACACCCTCAGTGGACCAACTCCGCAACATAAACCAAACACCGCTCGCGCCGAAAAAGATATGGSequence: CCACCTGTACCCGGACACACCCTGGTGTCC What human disease has been connected to this gene? Calculate molecular weight (kiloDalton, kD) and calculated pI (the pH where the protein carries no net electrical charge) of the protein.
- Content C b. Biol 1406-Lec 17 Gene Exp X acconline.austincc.edu/ultra/courses/_891351_1/cl/outline Blackboard Learn q Which of the following statements about gene regulation is not true? O RNA interference is the inhibition of mRNA translation by siRNA's or miRNA's literally blocking access to the mRNA transcript or causing it to degrade. O X GWhich of the following staten X QUESTION 8 Paraphrasing Tool - QuillBot Al x Your disk is almost full Save space by optimizing st Alternative RNA splicing in eukaryotes can produce many different polypeptides from a single mRNA sequence by interpreting differing mRNA segments as introns or exons and splicing them accordingly. O DNA methylation can reduce or halt DNA transcription as DNA is negatively charged and the added methyl is negatively charged causing the methylated DNA to supercoil becoming inaccessible to RNA polymerase. O Some operons such as the lac operon can be controlled through both positive and negative gene regulation. O…The following is a portion of a protein: met-trp-tyr-arg-gly-pro-thr-Various mutant forms of this protein have been recovered. Using the normal and mutant sequences, determine the DNA and mRNA sequences that code for this portion of the protein, and explain each of the mutations. a. met-trp- b. met-cys-ile-val-val-leu-gln- c. met-trp-tyr-arg-ser-pro-thr- d. met-trp-tyr-arg-gly-ala-val-ile-ser-pro-thr-Consider the following coding 71 nucleotide DNA template sequence (It does not contain a translational start): 5’- GTTTCCCCTATGCTTCATCACGAGGGCACTGACATGTGTAAACGAAATTCCAACCTGAGCGGCGT GTTGAG-3’ By in vitro translating the mRNA, you determined that the translated peptide is 15 amino acids long. What is the expected peptide sequence in single letter abbreviations?
- 5'- ATTGTGATATGGCCACCTGCCACCTGGAGAGCAGCT GATTAG-3' What oligopeptide is encoded by the above sequence? Please use the one-letter code for your answers. (You will need to consult the Table of the Genetic Code for this question) 1st letter UUU Phe UCU UCC Leu UCA UCG U UUC UUA UUG CUU C CUC CUA CUG AUU A AUC AUA AUG U GUU G GUC GUA GUG CCU Leu CCC CCA CCG ACU lle ACC ACA Met ACG GCU Val GCC GCA GCG с Second Letter Ser Pro Thr Ala UAU UAC A | AAU AAC AAA AAG GAU GAC GAA GAG Tyr CAU CAC CAA Gin CAG 1 UAA Stop UGA Stop A UAG Stop UGG Trp G His Lys UGU UGC Asp Glu G 3rd Asn AGU Ser U letter AGC AGA AGG Cys U CGU CGC Arg CGA CGG GGU GGC GGA GGG DCAG DUAG DUCAG Arg Gly UCAGDNA, RNA, AND PROTEIN SYNTHESIS (FILL IN THE BLANKS) GIVEN THE FOLLOWING CODING SEQUENCE FOR DNA, PROVIDE THE SEQUENCE OF THE COMPLEMENTARY(TEMPLATE) SEQUENCE. CODING SEQUENCE/ 5' ATGCATAGATTAGGATATCCCAGATAG 3' COMPLEMENTARY SEQUENCE: 3' ______________________________ 5' CODING SEQUENCE ~ mRNA transcript: 5' _______________________ 3' TRANSLATE THE GIVEN mRNA TRANSCRIPT INTO A POLYPEPTIDE SEQUENCE (REFER TO THE GENETIC CODE) POLYPEPTIDE SEQUENCE: _________________________________Which of the peptide sequences below best matches the hydropathy plot shown? 5 10 15 Residue Number ILYYAGSREDHSGYLIL EQSDTERNQHGALIYLI LIFLAIFPAGSTSEDRR RAFLILFMTYFLILFLI LHGDQNRERDGHSQERD 2 Hydropathy value 0 -4 -2
- 10:14 Protein 5-10092015113503.pdf https:api.schoology.comv1attachment169963838... Name Class Date RNA (pages 146-148) | SECTION REVIEW In this section you were introduced to the molecule that helps put the information in DNA to use: ribonucleic acid, or RNA. ANA Iis a nucleic acid that carries information from DNA to the ribosomes, the organelles in which proteins are made. RNA also carries out the process by which proteins are assem- bled from amino acids. RNA is quite similar to DNA in structure. However, there are some important differ- ences. RNA is single-stranded; DNA is dou- ble-stranded. RNA contains the sugar ribose; DNA contains deoxyribose. And RNA has the nitrogenous base uracil; DNA has thymine. In this section you also learned about the process of transcription. Transcription is t process in which part of a DNA molecule is used as a template for the synthesis of a com- plementary strand of RNA. This process is mediated by an enzyme called RNA poly- merase. The strand of…Given the genetic code below, enter the correct amino acid sequence for the following RNA sequence: AUG GAG UCC UUG CUG UGA (enter the amino acids as the 3 letter abbreviation on the table separated by dashes with no spaces e.g. Met-Thr-Lys-Glu-Ser) Alanine (Ala) AGUC Tyrosine (Tyr) Valine (Val) GU Cysteine (Cys) START HERE G Arginine (Arg) G Tryptophan (Trp) A C CUGA Serine (Ser) Leucine (Leu) Lysine (Lys) Proline (Pro) Asparagine (Asn) 0406 ACUGACUOROE (na) auone (aug) Giycine (Gly) Serine (Ser) Phenylalanine Glutamic acid (Glu) Aspartic acid (Asp) Histidine (His) Glutamine (Gin) Arginine (Arg) Isoleucine (lle) Methionine (Met) o Threonine (Thr)Sequence: CCACCTGTACCCGGACACACCCTGGTGTCC 1. Identify the gene from which the querysequence originates (Name of gene) 2. Provide the FULLprotein sequence encoded by the gene. 3. Are different splice variants known for this gene? 4. What human disease has been connected to this gene? 5. Calculate molecular weight (kiloDalton, kD) and calculated pI (the pH where the protein carries no net electrical charge) of the protein.