BIS103 Final S09 Callis

BIS103 Final S09 Callis - BIS103-001 FINAL Spring 09...

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BIS103-001 FINAL Spring 09 Instructor: Callis Name__________________________________________________ June 10, 2009 LAST NAME, FIRST NAME Please print clearly 1 WRITE YOUR NAME ON THE TOP OF EACH PAGE. ON THE NEXT PAGE, Please also WRITE YOUR STUDENT NUMBER. Note: There are 6 questions and a total of 14 pages, including this page. A blank sheet will be handed out to you- Use as a scratch paper and a PAPER TO COVER YOUR WORK. If you need extra space beyond what is available on the exam, you may write your answers on the back of the last sheet, or on the blank sheet handed out to you. If you use this sheet, CHECK THE BOX BELOW, and WRITE YOUR NAME AND STUDENT NUMBER ON THIS SHEET. I have answers on the extra sheet. FOR all questions: T= 310º K R= 8.315 J x mol -1 x K -1 Faraday's constant (F) is 96.5kJ x volt -1 x mol -1 Δ G o ' for the reaction ADP + P i ATP + H 2 O = + 30.5 kJ x mole -1 Δ G o ' = - n F Δ E o ' Δ G = Δ G o ' + RT ln [products/reactants] Δ E o ' = E o ' (a) - E o ' (d) Only the names of co-factors are required. You do not have to draw the structure of co-factors. I, ______________________________, authorize the University to distribute publicly this graded exam ( e.g. , handed out in class, or left in a bin for me to pick up). Signature ________________________________________ Date _____________________ Honor Code: My signature below affirms that I wrote this exam in the spirit of the honor system of UCD. I neither received nor furnished any help during the exam, nor will I alter the exam in a regrade request. Signature ________________________________________
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BIS103-001 FINAL Spring 09 Instructor: Callis Name__________________________________________________ June 10, 2009 LAST NAME, FIRST NAME Please print clearly 2 Student ID # _______________________________________ Question Value Score 1 10 2 18 3 12 4 16 5 14 6 30 TOTAL 100
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BIS103-001 FINAL Spring 09 Instructor: Callis Name__________________________________________________ June 10, 2009 LAST NAME, FIRST NAME Please print clearly 3
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BIS103-001 FINAL Spring 09 Instructor: Callis Name__________________________________________________ June 10, 2009 LAST NAME, FIRST NAME Please print clearly 4 1. (10 pts.) Fill in the blanks. (a). (4 pts.) Glucose-6-P is a intermediate in or the initial starting compound in multiple pathways in the human liver. Write the names of 4 of these pathways on the lines below. 1.____________________________________________ 2.____________________________________________ 3.___________________________________________ 4.___________________________________________ 1b. (6 pts). Complete the following sentences. Write the correct words in the spaces provided below the sentence. The sentences are not related to each other. I. Two major types of enzyme regulatory mechanisms that modulate enzyme specific activity discussed in class with multiple examples are ___a ___ and ___b ____. a. _____________________________ b._____________________________ __________________________________________________________________________________________ II. If methionine is not present in the diet of humans, the amino acid __c ___ (name a specific amino acid) can substitute for methionine, serving as a precursor for synthesis of new methionine. c. _____________________________________________ __________________________________________________________________________________________ III. Plants synthesize methionine from the carbon compound ___d ____ (name the amino acid biosynthetic family) and the source of sulfur is ______e _______. d. ____________________________________________ e. ____________________________________________ __________________________________________________________________________________________ IV. ______f _____ provides the reducing power for anabolic processes. f. ________________
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BIS103-001 FINAL Spring 09 Instructor: Callis Name__________________________________________________ June 10, 2009 LAST NAME, FIRST NAME Please print clearly 5 2. 18 pts. a. (10 pts). The overall reaction shown below is the sum of three different enzymatic reactions. Write out the three separate reactions below in the space provided, using names of compounds or structures. Name co-factors if required, but do not draw the structures of co-factors.
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