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Bio 390- Unit 3 Receptors
- What are the 2 requirements for hormone responsiveness?
- What is the first order receptor?
- What are the two ways hormones can be secreted with regard to synthe- sis?
- independent of synthesis
- directly coupled to synthesis
- What does it mean if you upregulate the synthesis of a hormone and see no change in
- Which type of hormones is stored in the cells in large quantities?
- Which type of hormone has secretion directly coupled to synthesis?
- What occurs in a free standing gland/cell?
- What is negative feedback loop with hormone secretion in a free standing gland/cell? 1 / 3
–Answer hormone is available and there are receptors
–Answer the receptor that the hormone binds to
–Answer
secretion?–Answer secretion is independent of synthesis
–Answer peptide and protein hormones
–Answer - steroids (they are produced as needed)
–Answer responds to a variety of signals which can increase or decrease synthesis or secretion of the hormone
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–Answer as hormone secretion increases the hormone itself or the biological response by the target cells may negatively feedback on the gland to decrease its own secretion
- What are the major endocrine glands regulated by ?
- The pituitary tropic hormones are in turn regulated by what?
- Where is the pituitary tropic hormones potential for negative feedback?
- How are peptide/protein hormones transported?
- How are steroid and thyroid hormones transported?
- What happens if the hydrophobic hormones do not have transporting proteins?
- What is the free hormone hypothesis (3)?
- unbound (free) steroid and TH in the serum can readily enter the cell
- hormone in cytoplasm is at equilibrium with the free hormone in the blood
- hormones simply diffuse into the cell
- Why is the free hormone hypothesis wrong?
–Answer pituitary tropic hormones
–Answer releasing hormones from the hypothalamus in the brain
–Answer at each part of the hypothalamic-pituitary axis
–Answer they are soluble so they circulate in the aqueous serum without assistance
–Answer bound to plasma pro- teins because they are not soluble in water
–Answer they will not be uniformly distributed in the body, rather they will localize in nearby cells
–Answer
–Answer transport proteins play a critical role in steroid and TH uptake, and free hormones in the blood and cytoplasm are not necessarily at equilibrium 2 / 3
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- What is the more common name for binding proteins?
- What is the experiment where they added a steroid to an organ with a radioactive label in
- in the absence of proteins very little label(and thus hormone) exiting the organ, it portioned
- in presence of proteins, there were lots of label leaving the organ
- What are the 3 main reasons binding proteins are important?
- distribution (moving hydrophobic hormones)
- maintain a pool of available hormone
- facilitate transporter mediated uptake
- What is an example of how plasma binding/distributor proteins can be significant
- during pregnancy females have significant elevated serum TH levels yet show no signs of
- this increase is due to an increase in thyroxine binding globulin to ensure a larger pool of
- Where do protein hormones typically act when they reach the target cell?-
–Answer distributing proteins
the absence and presence of proteins?–Answer
into the PM
–Answer
modulators of hormone availability and homeostasis?–Answer
hyperthyroidism
available TH which is important for fetal development
–Answer on the surface
- If a protein hormone is to enter the cell how are they taken up?
- How do amines, steroids, TH, ad calcitriol enter the cell?
- / 3
–Answer special transport systems
–Answer