Nevirapine, an antiretroviral drug used to treat HIV acts as an uncompetitive inhibitor of the viral enzyme, reverse transcriptase (RT). Where does this inhibitor bind to prevent viral replication? Select one: a. The enzyme-substrate complex b. The viral DNA product c. Directly to reverse transcriptase d. The substrate

Human Anatomy & Physiology (11th Edition)
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Chapter1: The Human Body: An Orientation
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### Nevirapine as an Antiretroviral Drug 

**Nevirapine**, an antiretroviral drug used to treat HIV, acts as an uncompetitive inhibitor of the viral enzyme, reverse transcriptase (RT). 

**Question**: Where does this inhibitor bind to prevent viral replication?

**Options**:  
a. The enzyme-substrate complex  
b. The viral DNA product  
c. Directly to reverse transcriptase  
d. The substrate

---

### Amino Acid Breakdown in Humans

Humans are able to break down amino acids, removing the amino group from the carbon skeleton and excreting waste as urea.

**Question**: Select the correct sequence of events in this metabolic pathway.

**Options**:  
a. Transamination, ammonia assimilation, deamination, ammonia metabolism  
b. Deamination, transamination, ammonia metabolism, ammonia assimilation  
c. Deamination, ammonia assimilation, transamination, ammonia metabolism  
d. Transamination, deamination, ammonia assimilation, ammonia metabolism
Transcribed Image Text:### Nevirapine as an Antiretroviral Drug **Nevirapine**, an antiretroviral drug used to treat HIV, acts as an uncompetitive inhibitor of the viral enzyme, reverse transcriptase (RT). **Question**: Where does this inhibitor bind to prevent viral replication? **Options**: a. The enzyme-substrate complex b. The viral DNA product c. Directly to reverse transcriptase d. The substrate --- ### Amino Acid Breakdown in Humans Humans are able to break down amino acids, removing the amino group from the carbon skeleton and excreting waste as urea. **Question**: Select the correct sequence of events in this metabolic pathway. **Options**: a. Transamination, ammonia assimilation, deamination, ammonia metabolism b. Deamination, transamination, ammonia metabolism, ammonia assimilation c. Deamination, ammonia assimilation, transamination, ammonia metabolism d. Transamination, deamination, ammonia assimilation, ammonia metabolism
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