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膳食氨基酸促进胰高血糖素样激素释放,在脂肪组织中产生新的钙波。

Dietary Amino Acids Promote Glucagon-like Hormone Release to Generate Novel Calcium Waves in Adipose Tissues.

作者信息

He Li, Ahmad Muhammad, Wu Shang, Luo Shengyao, Shi Wenjia, Guo Xuan, Cao Yuansheng, Perrimon Norbert

机构信息

University of Science and Technology of China.

Harvard Medical School.

出版信息

Res Sq. 2024 Jun 12:rs.3.rs-4493132. doi: 10.21203/rs.3.rs-4493132/v1.

Abstract

Nutrient sensing and the subsequent metabolic responses are fundamental functions of animals, closely linked to diseases such as type 2 diabetes and various obesity-related morbidities. Among different metabolic regulatory signals, cytosolic Ca plays pivotal roles in metabolic regulation, including glycolysis, gluconeogenesis, and lipolysis. Recently, intercellular calcium waves (ICWs), the propagation of Ca signaling through tissues, have been found in different systems to coordinate multicellular responses. Nevertheless, our understanding of how ICWs are modulated and operate within living organisms remains limited. In this study, we explore the real-time dynamics, both in organ culture and free-behaving animals, of ICWs in larval and adult adipose tissues. We identified Adipokinetic hormone (AKH), the fly functional homolog of mammalian glucagon, as the key factor driving Ca activities in adipose tissue. Interestingly, we found that AKH, which is released in a pulsatile manner into the circulating hemolymph from the AKH-producing neurosecretory cells (APCs) in the brain, stimulates ICWs in the larval fat by a previously unrecognized gap-junction-independent mechanism to promote lipolysis. In the adult fat body, however, gap-junction-dependent random ICWs are triggered by a presumably uniformly diffused AKH. This highlights the stage-specific interplay of hormone secretion, extracellular diffusion, and intercellular communication in the regulation of Ca dynamics. Additionally, we discovered that specific dietary amino acids activate the APCs, leading to increased intracellular Ca and subsequent AKH secretion. Altogether, our findings identify that dietary amino acids regulate the release of AKH peptides from the APCs, which subsequently stimulates novel gap-junction-independent ICWs in adipose tissues, thereby enhancing lipid metabolism.

摘要

营养感知及随后的代谢反应是动物的基本功能,与2型糖尿病和各种肥胖相关疾病密切相关。在不同的代谢调节信号中,胞质钙在代谢调节中发挥着关键作用,包括糖酵解、糖异生和脂肪分解。最近,在不同系统中发现了细胞间钙波(ICWs),即钙信号在组织中的传播,以协调多细胞反应。然而,我们对ICWs在活生物体中如何被调节和运作的理解仍然有限。在这项研究中,我们探索了幼虫和成年脂肪组织中ICWs在器官培养和自由活动动物中的实时动态。我们确定了脂肪动激素(AKH),即哺乳动物胰高血糖素在果蝇中的功能同源物,是驱动脂肪组织中钙活动的关键因素。有趣的是,我们发现,从大脑中产生AKH的神经分泌细胞(APCs)以脉冲方式释放到循环血淋巴中的AKH,通过一种以前未被认识的不依赖间隙连接的机制刺激幼虫脂肪中的ICWs,从而促进脂肪分解。然而,在成年脂肪体中,依赖间隙连接的随机ICWs是由一种可能均匀扩散的AKH触发的。这突出了激素分泌、细胞外扩散和细胞间通讯在钙动态调节中的阶段特异性相互作用。此外,我们发现特定的膳食氨基酸激活APCs,导致细胞内钙增加和随后的AKH分泌。总之,我们的研究结果表明,膳食氨基酸调节APCs中AKH肽的释放,随后刺激脂肪组织中新型的不依赖间隙连接的ICWs,从而增强脂质代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6be3/11213180/c3a777d47b52/nihpp-rs4493132v1-f0001.jpg

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