Department of Internal Medicine, University Hospital of Split, 21000 Split, Croatia.
Department of Pathophysiology, University of Split School of Medicine, 21000 Split, Croatia.
Int J Mol Sci. 2024 May 15;25(10):5399. doi: 10.3390/ijms25105399.
Gap junctions (GJs) are important in the regulation of cell growth, morphology, differentiation and migration. However, recently, more attention has been paid to their role in the pathogenesis of different diseases as well as tumorigenesis, invasion and metastases. The expression pattern and possible role of connexins (Cxs), as major GJ proteins, under both physiological and pathological conditions in the adrenal gland, were evaluated in this review. The databases Web of Science, PubMed and Scopus were searched. Studies were evaluated if they provided data regarding the connexin expression pattern in the adrenal gland, despite current knowledge of this topic not being widely investigated. Connexin expression in the adrenal gland differs according to different parts of the gland and depends on ACTH release. Cx43 is the most studied connexin expressed in the adrenal gland cortex. In addition, Cx26, Cx32 and Cx50 were also investigated in the human adrenal gland. Cx50 as the most widespread connexin, along with Cx26, Cx29, Cx32, Cx36 and Cx43, has been expressed in the adrenal medulla with distinct cellular distribution. Considerable effort has recently been directed toward connexins as therapeutically targeted molecules. At present, there exist several viable strategies in the development of potential connexin-based therapeutics. The differential and hormone-dependent distribution of gap junctions within adrenal glands, the relatively large gap junction within this gland and the increase in the gap junction size and number following hormonal treatment would indicate that gap junctions play a pivotal role in cell functioning in the adrenal gland.
间隙连接 (GJ) 在细胞生长、形态、分化和迁移的调节中起着重要作用。然而,最近,人们越来越关注它们在不同疾病发病机制以及肿瘤发生、侵袭和转移中的作用。本文评价了在生理和病理条件下,主要 GJ 蛋白连接蛋白 (Cx) 在肾上腺中的表达模式及其可能的作用。在 Web of Science、PubMed 和 Scopus 数据库中进行了搜索。如果研究提供了有关肾上腺中连接蛋白表达模式的数据,尽管目前对此主题的了解尚未广泛研究,则对其进行了评估。连接蛋白在肾上腺中的表达因腺体的不同部位以及 ACTH 释放而异。Cx43 是在肾上腺皮质中研究最多的连接蛋白。此外,在人类肾上腺中还研究了 Cx26、Cx32 和 Cx50。Cx50 作为最广泛表达的连接蛋白,与 Cx26、Cx29、Cx32、Cx36 和 Cx43 一起,在肾上腺髓质中具有不同的细胞分布。最近,人们已经在努力将连接蛋白作为治疗靶向分子。目前,在开发潜在的连接蛋白治疗方法方面存在几种可行的策略。肾上腺中缝隙连接的差异和激素依赖性分布、该腺体中相对较大的缝隙连接以及激素治疗后缝隙连接大小和数量的增加表明,缝隙连接在肾上腺细胞功能中起着关键作用。