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  • von Antonio Castro
    23,00 €

    This book is a comprehensive guide to understanding Adrenal Fatigue Syndrome, its causes, signs and symptoms, and offers a range of proven remedies for recovery. Through the power of diet, nutrition and lifestyle, you will learn how to heal your own Adrenal Fatigue naturally, without the drugs, medications, stimulants or fad diets that are short-term, temporary "fixes" and often just make the condition worse.You'll Learn...What Adrenal Fatigue Really IsWhat The Signs & Symptoms Of Adrenal Fatigue AreWhat Causes Adrenal FatigueWho Is Most Susceptible To Adrenal FatigueNatural Methods Of Treating Adrenal FatigueAbout An Adrenal Fatigue Eating PlanHow To Relieve Stress NaturallyMuch, much more!The only problem is, your body never recharges fully when you have adrenal fatigue. With the help of my team, we have come up with a program to put the brakes on the cortisol that has become unregulated in your body. This isn't a cure all. This is an easy and effective system that brings your body back, so you can recharge and reset the adrenal glands and start to regain the ability to tackle your day with energy and desire.

  • von Antonio Castro
    34,00 €

    The Rac1 GTPase plays key roles in cytoskeletal organization, cell motility and a variety of physiological and disease-linked responses. Wild type Rac1 signaling entails dissociation of the GTPase from cytosolic Rac1-Rho GDP dissociation inhibitor (GDI) complexes, translocation to membranes, activation by exchange factors, effector binding, and activation of downstream signaling cascades. Out of those steps, membrane translocation is the less understood. Using transfections of a expression cDNA library in cells expressing a Rac1 bioreporter, we previously identified a cytoskeletal feedback loop nucleated by the F-actin binding protein coronin 1A (Coro1A) that promotes Rac1 translocation to the plasma membrane by facilitating the Pak-dependent dissociation of Rac1-Rho GDI complexes. This screening identified other potential regulators of this process, including WDR26, basigin, and TMEM8A. Here, we show that WDR26 promotes Rac1 translocation following a Coro1A-like and Coro1A-dependent mechanism. By contrast, basigin and TMEM8A stabilize Rac1 at the plasma membrane by inhibiting the internalization of caveolin-rich membrane subdomains.

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