Fill in the RNA quantification table below: Sample A260 A280 A260 A280 Concentration (ng/μl) Untreated 1.8 1.2 type your answ type your answe Treated 1.6 0.64 type your answ type your answe Pure? choose your: choose your V
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- Human immunodeficiency virus (HIV), the causative agent of acquired immune deficiency syndrome (AIDS) infects T-helper cells that have the CD4 receptor on their surface: gp120 RNA- Core with protein coat Envelope (a) Structure of HIV Copyright © 2001 Benjamin Cummings, an imprint of Addison Wesley Longman, Inc. Edit View Insert Format Tools Table 12pt Paragraph -Reverse transcriptase enzyme B -Capsomeres of protein coat I U Αν 2 T cell A. As shown in the above diagram, HIV attaches to a susceptible cell by a binding interaction between the gp120 protein on the virus protein and the CD4 and CXCR4 receptors on the surface of the T-helper cell. What will be the next event in the virus life cycle? B. One mechanism for transmission of HIV is direct contact during sexual activity. What is the other common mechanism of transmission? over DNA (b) HIV infecting a T cell with CD4 receptors, and CXCR4 coreceptors which are distributed over the surface of the cell T² v -CD4 receptor -CXCR4…Below is the DNA sequence of a patient with overlapping genes (a single mRNA has multiple initiation points for translation) for two different proteins (DADαs and AMA): 5’- GTCCCAACCATGCCCACCGATCTTCCGCCTGCTTCTGAAGATGCGGGCCCAGGGAAATCTCTAACG-3’ 1. Indicate the DNA sequence coding for RNA. 2. Indicate the amino acid sequence of each of them.BM4_DNA AND PROTEIN S X /1FAIPQLSDP_g5B-629FSHNpGnTMIEppLS4A71zBd4vcUBqNUILubXONw/formResponse 4. What is the nitrogen base pair of Adenine in transcription? O Cytosine O Uracil O guanine O thymine 5. The central dogma of Molecular Biology states that There are four nitrogen bases in DNA, two purines (adenine and guanine) and two pyrimidines (cytosine and thymine). Which process is not included in the central dogma? duplication transcription translation O translocation Leadple
- Answer the following 2 questions based on the figure below. The figure represents a ERNA that recognizes and binds a particular amino acid. of Second letter A UUUphe UAU UACTy UAA Stop UGA Stop A UAG Stop UGG Trp C UGU UccJCy UCU UUCJ UUA 1. UUG Leu UCC Ser UCA UcO CUU CUC Leu CGU CAUTHis CU CAC. CAA CAG CGC Pro Arg CUA CCA CGA CG, CUG AUU AGU Ser AGC. ACU AUC File A AUA ACC Thr ACA AAC AAA Lys AGA Arg AUG Met ACG AAG GAU GUU GUC GUA GUG GCU GCC GAC. GAA GAG Gu Asp GGU] GGC Gly val Ala GCA GCG) GGA GGG) G 1. Which codon (from 5-3) on the MRNA strand codes for this amino acid? (write your answer in the first box) 2. Which amino acid this RNA binds? (write your answer in the second box) First letter Third letterSickle cell hemoglobin DNA CA CG TAGACTGAGGACA C Sickle cell hemoglobin MRNA Sickle cell hemoglobin AA sequence ValoHis.lku thro proo Gily 4. What type of mutation is this? Please explain why.Design 6 bp primers to amplify the region of this sequence that is highlighted in yellow. attatatttt atattatata ctctgggctc agagcagccc 40 41 atattatata tatatatttt aaaatattat aaatttattt 80 81 cagtcacgcg tcctgatgac attatatttt ataatttttt 120 121 ttttattttt attatatttt aaaatattat aaatttattt 160 161 aaaatattat tatatattta aaatttattt attataaaat 200 201 aaaatattat ttttattttt gagatcagga cggctgcatg 240 Forward primer Reverse primer
- 5'GGT ACG TTG GGG CTC CAT3' This sequence is transcribed and translated. Write the resulting amino acid sequence using the 3 letter code. Write the answer in a all capital letters. Leave a space between the amino acids. Do not write 5' and 3'.What would happen if you changed the anticodon in the Tryptophan tRNA from ACC to AAC? First letter U C A G U UUU Phe UUC Phe UUA Leu UUG Leu CỰU Leu CUC Leu CUA Leu CUG Leu AUU lle AUC lle AUA lle AUG Met GUU Val GUC Val GUA Val GUG Val Second letter C A UCU Ser UCC Ser UCA Ser UCG Ser CCU Pro CCC Pro CCA Pro CCG Pro ACU Thr ACC Thr ACA Thr ACG Thr GCU Ala GCC Ala GCA Ala GCG Ala UAU Tyr UAC Tyr UAA Stop UAG Stop CAU His CAC His CAA Gln CAG Gln AAU Asn AAC Asn AAA Lys AAG Lys GAU Asp GAC Asp GAA Glu GAG Glu G UGU Cys UGC Cys UGA Stop UGG Trp CGU Arg CGC Arg CGA Arg CGG Arg AGU Ser AGC Ser AGA Arg AGG Arg GGU Gly GGC Gly GGA Gly GGG Gly O Tryptophan would be incorporated into peptides where leucine normally goes Tryptophan would be incorporated into peptides where it normally goes ○ Leucine would be incorporated into peptides where Tryptophan normally goes O Histidine would be incorporated into peptides where Leucine normally goes U C A G U C A G U C A G U C A G Third letter015347/quizzes/5825797/take 21. The processing events that must occur on the MRNA after it is transcribed, but before it is released into the nucleus include (select all that apply) Primary RNA transcript Exon 1 Intron Exon 2 Intron Exon 3 RNA processing Spliced RNA Exon 1 Exon 2 Exon 3 AAAAAAA 5' cap Poly-A tail 3' untranslated region 5' untranslated region O folding into its functional shape O splicing out exons O adding a poly-A tail O removal of non-coding sections O capping the 5' end hp
- 1. You are investigating a protein that has the amino acid sequence N ... Ala – Thr - Asn – Trp – Lys - Arg - Gly – Phe – Thr ... C within its primary structure. You found that several of the mutations affecting this protein produced shortened protein molecules that terminated within this region. In one of the mutants, the Asn became the terminal (last) amino acid. (a) What DNA single-base changes(s) would cause the protein to terminate at the Asn residue? (b) What other potential sites do you see in the DNA sequence encoding this protein where mutation of a single base pair would cause premature termination of translation? >Given the sequence below, (A) What is the transcript (MRNA) sequence? (B) What is the amino acid sequence of the translated peptide? Rather than using abbreviations, write out the entire name of each of the amino acids in your peptide, so you do not risk using the wrong abbreviation and, therefore, providing the wrong sequence. 5' - ATG CTT GTA ATA CCG TGA - 3'Kindly help, I don't understand this topic :(( In each of the following DNA sequences, write the contesponding mRNA transcript right beside the item we the item and use the genetic code to determine the resulting amino acid sequence. You may proceed even without the start codon 1. TTTTACCATCCCACAATTTA 2 ACTACTTTCAGAGCTATATTCAG 3. CATTACGGAGCCTGATGCACTTAC 4. TACGCCGCAACTCCGTATGGO 5. Garg-CTACAGCCCTAGCATTTACCCG