TLS Online TPP Program

#Question id: 10458


Which of the following statements is not true for cry proteins?

#Unit 6. System Physiology – Plant
  1. Both cry1 and cry2 appear to be ubiquitous throughout the plant kingdom
  2. cry1 protein is preferentially degraded under blue light, whereas cry2 is much more stable
  3. cry1 and cry2 are generally found in the nucleus, cry3 is localized to chloroplasts and mitochondria
  4. cry protein are also involved in DNA repair
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TLS Online TPP Program

#Question id: 1196

#Unit 4. Cell Communication and Cell Signaling

Cell signaling means all of the following except:

TLS Online TPP Program

#Question id: 1197

#Unit 4. Cell Communication and Cell Signaling

In a signal transduction pathway, what is passed from the upstream member of the pathway to the downstream member?

TLS Online TPP Program

#Question id: 1198

#Unit 4. Cell Communication and Cell Signaling

Both epinephrine and glucagon bind to G protein-coupled receptors and activate glycogen breakdown. Therefore, epinephrine and glucagon must:

TLS Online TPP Program

#Question id: 1199

#Unit 4. Cell Communication and Cell Signaling

If you break liver cells by homogenization, separate the broken cell membranes (particulate) from the cytoplasm (soluble), and add epinephrine to the soluble portion, the result will be:

TLS Online TPP Program

#Question id: 1200

#Unit 4. Cell Communication and Cell Signaling

Glucagon binds to the glucagon receptor, which interacts with a membrane-bound G protein, whose α subunit releases GDP and binds GTP. The α subunit then dissociates from the G protein and diffuses to a membrane-bound adenylyl cyclase which produces cAMP. In this scenario, name the

(1) transducer,

(2) effector,

(3) first messenger, and

(4) second messenger.

TLS Online TPP Program

#Question id: 1201

#Unit 4. Cell Communication and Cell Signaling

Epinephrine binds to the same type of receptors in liver, fat, and smooth muscle cells. Yet in liver, glycogen breaks down; in fat, triacylglycerols break down; and smooth muscle cells relax. How can the same hormone produce three such different responses?