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A tartalmat a Robert Lefkowitz biztosítja. Az összes podcast-tartalmat, beleértve az epizódokat, grafikákat és podcast-leírásokat, közvetlenül a Robert Lefkowitz vagy a podcast platform partnere tölti fel és biztosítja. Ha úgy gondolja, hogy valaki az Ön engedélye nélkül használja fel a szerzői joggal védett művét, kövesse az itt leírt folyamatot https://hu.player.fm/legal.
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Robert Lefkowitz

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Archivált sorozatok ("Inaktív feed" status)

When? This feed was archived on October 26, 2018 11:39 (6y ago). Last successful fetch was on October 04, 2017 15:44 (7y ago)

Why? Inaktív feed status. A szervereink huzamosabb ideig nem tudtak érvényes podcast-feedet megjeleníteni.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage series 1605942
A tartalmat a Robert Lefkowitz biztosítja. Az összes podcast-tartalmat, beleértve az epizódokat, grafikákat és podcast-leírásokat, közvetlenül a Robert Lefkowitz vagy a podcast platform partnere tölti fel és biztosítja. Ha úgy gondolja, hogy valaki az Ön engedélye nélkül használja fel a szerzői joggal védett művét, kövesse az itt leírt folyamatot https://hu.player.fm/legal.
In the late 1960s, it was already known that hormones such as adrenalin, histamine, dopamine and serotonin stimulate specific responses in the cells of human beings and other organisms. But the mechanism by which cells perceive and respond to these hormones was shrouded in mystery. In 1969, Lefkowitz successfully attached a radioactive isotope of iodine to a form of the hormone adrenaline, enabling him to track its movements within an organism. By 1974, he observed the hormone interacting with a specific protein in the cell wall, the first of many such "G Protein coupled receptors" (GPCRs) he would identify in the next 15 years of groundbreaking research. In 1986, he and his associates at Duke University Medical Center succeeded in cloning and sequencing the gene for one of these receptors and found that it responds to adrenaline much as receptors in the eye register light. He has since identified a superfamily of receptor proteins that circulate back and forth through the cell wall, triggering the appropriate response to hormones and other stimuli. Roughly half of all medications in use today depend on the action of the receptors Dr. Lefkowitz discovered; they are used to treat everything from diabetes to depression. His discovery has been recognized with nearly every honor in American science, as well as the 2012 Nobel Prize in Chemistry. This podcast combines excerpts from the Academy of Achievement's 2014 interview with Dr. Lefkowitz with highlights from his address to the 2014 International Achievement Summit in San Francisco.
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3 epizódok

Artwork

Robert Lefkowitz

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iconMegosztás
 

Archivált sorozatok ("Inaktív feed" status)

When? This feed was archived on October 26, 2018 11:39 (6y ago). Last successful fetch was on October 04, 2017 15:44 (7y ago)

Why? Inaktív feed status. A szervereink huzamosabb ideig nem tudtak érvényes podcast-feedet megjeleníteni.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage series 1605942
A tartalmat a Robert Lefkowitz biztosítja. Az összes podcast-tartalmat, beleértve az epizódokat, grafikákat és podcast-leírásokat, közvetlenül a Robert Lefkowitz vagy a podcast platform partnere tölti fel és biztosítja. Ha úgy gondolja, hogy valaki az Ön engedélye nélkül használja fel a szerzői joggal védett művét, kövesse az itt leírt folyamatot https://hu.player.fm/legal.
In the late 1960s, it was already known that hormones such as adrenalin, histamine, dopamine and serotonin stimulate specific responses in the cells of human beings and other organisms. But the mechanism by which cells perceive and respond to these hormones was shrouded in mystery. In 1969, Lefkowitz successfully attached a radioactive isotope of iodine to a form of the hormone adrenaline, enabling him to track its movements within an organism. By 1974, he observed the hormone interacting with a specific protein in the cell wall, the first of many such "G Protein coupled receptors" (GPCRs) he would identify in the next 15 years of groundbreaking research. In 1986, he and his associates at Duke University Medical Center succeeded in cloning and sequencing the gene for one of these receptors and found that it responds to adrenaline much as receptors in the eye register light. He has since identified a superfamily of receptor proteins that circulate back and forth through the cell wall, triggering the appropriate response to hormones and other stimuli. Roughly half of all medications in use today depend on the action of the receptors Dr. Lefkowitz discovered; they are used to treat everything from diabetes to depression. His discovery has been recognized with nearly every honor in American science, as well as the 2012 Nobel Prize in Chemistry. This podcast combines excerpts from the Academy of Achievement's 2014 interview with Dr. Lefkowitz with highlights from his address to the 2014 International Achievement Summit in San Francisco.
  continue reading

3 epizódok

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