University of Michigan Medical School, Ann Arbor, Michigan, United States.
Am J Physiol Endocrinol Metab. 2023 Nov 1;325(5):E425-E437. doi: 10.1152/ajpendo.00265.2023. Epub 2023 Sep 6.
Walter Cannon was a highly regarded American neurologist and physiologist with extremely broad interests. In the tradition of Cannon and his broad interests, we discuss our laboratory's multifaceted work in signal transduction over the past 40+ years. We show how our questioning of how growth hormone (GH) in the blood communicates with cells throughout the body to promote body growth and regulate body metabolism led to insight into not only body height but also important regulators of malignancy and body weight. Highlights include finding that ) A critical initiating step in GH signal transduction is GH activating the GH receptor-associated tyrosine kinase JAK2; ) GH activation of JAK2 leads to activation of a number of signaling proteins, including STAT transcription factors; ) JAK2 is autophosphorylated on multiple tyrosines that regulate the activity of JAK2 and recruit signaling proteins to GH/GH receptor/JAK2 complexes; ) Constitutively activated STAT proteins are associated with cancer; ) GH activation of JAK2 recruits the adapter protein SH2B1 to GH/GH receptor/JAK2 complexes where it facilitates GH regulation of the actin cytoskeleton and motility; and ) SH2B1 is recruited to other receptors in the brain, where it enhances satiety, most likely in part by regulating leptin action and neuronal connections of appetite-regulating neurons. These findings have led to increased understanding of how GH functions, as well as therapeutic interventions for certain cancer and obese individuals, thereby reinforcing the great importance of supporting basic research since one never knows ahead of time what important insight it can provide.
沃尔特·坎农(Walter Cannon)是一位备受推崇的美国神经学家和生理学家,他的兴趣极其广泛。我们秉承坎农及其广泛兴趣的传统,讨论了我们实验室过去 40 多年来在信号转导方面的多方面工作。我们展示了我们对血液中的生长激素(GH)如何与全身细胞通讯以促进身体生长和调节身体代谢的质疑,如何不仅深入了解了身高,还深入了解了恶性肿瘤和体重的重要调节因子。其中的亮点包括:(1)GH 信号转导的关键起始步骤是 GH 激活 GH 受体相关酪氨酸激酶 JAK2;(2)GH 激活 JAK2 导致许多信号蛋白的激活,包括 STAT 转录因子;(3)JAK2 的多个酪氨酸残基发生自身磷酸化,调节 JAK2 的活性并募集信号蛋白到 GH/GH 受体/JAK2 复合物中;(4)组成性激活的 STAT 蛋白与癌症有关;(5)GH 激活 JAK2 将衔接蛋白 SH2B1 募集到 GH/GH 受体/JAK2 复合物中,在那里它促进 GH 对肌动蛋白细胞骨架和运动的调节;(6)SH2B1 被募集到大脑中的其他受体,在那里它增强饱腹感,这很可能部分是通过调节瘦素作用和食欲调节神经元的神经元连接来实现的。这些发现增加了对 GH 功能的理解,以及对某些癌症和肥胖个体的治疗干预,从而强化了支持基础研究的重要性,因为人们事先永远不知道它可以提供什么重要的见解。