Sandbox Reserved 1120: Difference between revisions

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===Cathecolamines regulation===
===Cathecolamines regulation===


It has been shown that SRY is present in brain regions and activates the Tyrosine-3-Hydroxylase expression. This enzyme catalyses the rate-limiting step of catecholamine synthesis (L-Tyrosine to L-DOPA). Furthermore, SRY also activates the expression of Monoamine Oxidase A which is responsible for the inactivation of catecholamines. Therefore, it regulates both positively and negatively the catecholamines concentration. <ref>PMID: 24604382</ref>
It has been shown that SRY is present in brain regions and activates the Tyrosine-3-Hydroxylase expression. This enzyme catalyses the rate-limiting step of catecholamine synthesis (L-Tyrosine to L-DOPA). Furthermore, SRY also activates the expression of Monoamine Oxidase A which is responsible for the inactivation of catecholamines. Therefore, it regulates both positively and negatively the catecholamines concentration<ref name="Veitia">PMID: 24604382</ref>.


===Other extra-testicular effects===
===Other extra-testicular effects===


Some knock-down experiments have shown that SRY may also be a major actor in the dopamine pathway. On the peripheral side, it seems to regulate noradrenaline levels and blood pressure.<ref>PMID: 24604382</ref> A researcher who contributed to discovering these effects says it might explain why "the aggressive fight-or-flight reaction is more dominant in men, while women predominantly adopt a less aggressive tend-and-befriend response".<ref>Cohen, Tamara. The 'macho' gene that makes men behave aggressively has been found. The Daily Mail (2012). [http://www.dailymail.co.uk/sciencetech/article-2111668/The-macho-gene-makes-men-aggressive-found.html#ixzz3yZC2BV4k]</ref>
Some knock-down experiments have shown that SRY may also be a major actor in the dopamine pathway. On the peripheral side, it seems to regulate noradrenaline levels and blood pressure<ref name="Veitia" />. A researcher who contributed to discovering these effects says it might explain why "the aggressive fight-or-flight reaction is more dominant in men, while women predominantly adopt a less aggressive tend-and-befriend response".<ref>Cohen, Tamara. The 'macho' gene that makes men behave aggressively has been found. The Daily Mail (2012). [http://www.dailymail.co.uk/sciencetech/article-2111668/The-macho-gene-makes-men-aggressive-found.html#ixzz3yZC2BV4k]</ref>


It has been shown that SRY would be involved in the regulation of the renin-angiotensin system in mice. Indeed, sequence mutations of the protein lead to hypertension. Because the human's SRY organisation is very closed to he mouse's, it has been proposed that SRY would have the same function in human but it has not been studied directly.<ref>PMID:22315667</ref>
It has been shown that SRY would be involved in the regulation of the renin-angiotensin system in mice. Indeed, sequence mutations of the protein lead to hypertension. Because the human's SRY organisation is very closed to he mouse's, it has been proposed that SRY would have the same function in human but it has not been studied directly.<ref>PMID:22315667</ref>

Revision as of 11:42, 30 January 2016

This Sandbox is Reserved from 15/12/2015, through 15/06/2016 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1120 through Sandbox Reserved 1159.
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SRY protein (AKA TDF protein)

The SRY protein linked to DNA

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References