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Concept explainers
Oligonucleotide Synthesis
In Section
available for use as primers for PCR and as probes for cloning DNA. Here we will examine how these oligonucleotides are prepared.
The method bears many similarities to the Merrifield solid-phase synthesis of peptides. A starter unit is attached to a solid support, nucleosides are attached one-by-one until the sequence is complete, whereupon the target oligonucleotide is removed from the support and purified. Like solid-phase peptide synthesis, the preparation of oligonucleotides relies heavily on protecting groups and bond-forming methods.
The starter units are nucleosides in which
Thymidine lacks an
These
remain in place throughout the synthesis. They are the first ones added and the last ones removed. None of the further “chemistry” that takes place involves the purine or pyrimidine rings.
The
(DMT) ether.
The nucleoside that is to serve as the
controlled-pore glass (CPG) bead by ester formation between its unprotected
The stage is now set for adding the second nucleoside. The four blocked nucleosides prepared
earlier are converted to their corresponding
Each phosphoramidite is coupled to the anchored nucleoside by a reaction in which the free
The product of the coupling is a phosphite; it has the general formula
in the last step of Figure
The
Once all the nucleosides are in place and the last DMT is removed, treatment with aqueous
ammonia removes the acyl and cyanoethyl groups and cleaves the oligonucleotide from the CPG
support.
Antisense oligonucleotides are a new class of synthetic drugs, one of which has been
approved for use, with numerous others being developed and tested. An antisense drug is
designed to have a sequence that is complementary to a portion of a messenger RNA of
an organism connected with a disease. The rationale is that the oligonucleotide will bind
to the mRNA and interfere with the biosynthesis of a particular protein. An antisense
oligonucleotide proposed for treatment of ulcerative colitis has the sequence
CAA
GCT GGC ATC GCT
attached to the controlled
pore glass bead?
A. A C. C
B. T D. G
Section 27.6 Many important compounds contain two or more nucleotides joined together by
a phosphodiester linkage. The best known are those in which the phosphodiester joins the 5′oxygen of one
Oligonucleotides contain about 50 or fewer nucleotides held together by
phosphodiester links; polynucleotides can contain thousands of nucleotides.
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Chapter 27 Solutions
ORGANIC CHEMISTRY (LL)-W/SOLN.>CUSTOM<
- Show work. Don't give Ai generated solutionarrow_forwardNonearrow_forwardTransmitance 3. Which one of the following compounds corresponds to this IR spectrum? Point out the absorption band(s) that helped you decide. OH H3C OH H₂C CH3 H3C CH3 H3C INFRARED SPECTRUM 0.8- 0.6 0.4- 0.2 3000 2000 1000 Wavenumber (cm-1) 4. Consider this compound: H3C On the structure above, label the different types of H's as A, B, C, etc. In table form, list the labeled signals, and for each one state the number of hydrogens, their shifts, and the splitting you would observe for these hydrogens in the ¹H NMR spectrum. Label # of hydrogens splitting Shift (2)arrow_forward
- Nonearrow_forwardDraw the Lewis structure of C2H4Oarrow_forwarda) 5. Circle all acidic (and anticoplanar to the Leaving group) protons in the following molecules, Solve these elimination reactions, and identify the major and minor products where appropriate: 20 points + NaOCH3 Br (2 productarrow_forward
- Nonearrow_forwardDr. Mendel asked his BIOL 260 class what their height was and what their parent's heights were. He plotted that data in the graph below to determine if height was a heritable trait. A. Is height a heritable trait? If yes, what is the heritability value? (2 pts) B. If the phenotypic variation is 30, what is the variation due to additive alleles? (2 pts) Offspring Height (Inches) 75 67.5 60 52.5 y = 0.9264x + 4.8519 55 60 65 MidParent Height (Inches) 70 75 12pt v V Paragraph B IUA > AT2 v Varrow_forwardExperiment: Each team will be provided with 5g of a mixture of acetanilide and salicylic acid. You will divide it into three 1.5 g portions in separate 125 mL Erlenmeyer flasks savıng some for melting point analysis. Dissolve the mixture in each flask in ~60mL of DI water by heating to boiling on a hotplate. Take the flasks off the hotplate once you have a clear solution and let them stand on the bench top for 5 mins and then allow them to cool as described below. Sample A-Let the first sample cool slowly to room temperature by letting it stand on your lab bench, with occasional stirring to promote crystallization. Sample B-Cool the second sample 1n a tap-water bath to 10-15 °C Sample C-Cool the third sample in an ice-bath to 0-2 °C Results: weight after recrystalization and melting point temp. A=0.624g,102-115° B=0.765g, 80-105° C=1.135g, 77-108 What is the percent yield of A,B, and C.arrow_forward
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