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目前关于腺组织中D-天冬氨酸的知识。

Current knowledge of D-aspartate in glandular tissues.

作者信息

Di Fiore Maria Maddalena, Santillo Alessandra, Chieffi Baccari Gabriella

机构信息

Dipartimento di Scienze e Tecnologie Ambientali, Biologiche e Farmaceutiche, Seconda Università di Napoli, via Vivaldi 43, 80100, Caserta, Italy,

出版信息

Amino Acids. 2014 Aug;46(8):1805-18. doi: 10.1007/s00726-014-1759-2. Epub 2014 May 17.

Abstract

Free D-aspartate (D-Asp) occurs in substantial amounts in glandular tissues. This paper reviews the existing work on D-Asp in vertebrate exocrine and endocrine glands, with emphasis on functional roles. Endogenous D-Asp was detected in salivary glands. High D-Asp levels in the parotid gland during development suggest an involvement of the amino acid in the regulation of early developmental phases and/or differentiation processes. D-Asp has a prominent role in the Harderian gland, where it elicits exocrine secretion through activation of the ERK1/2 pathway. Interestingly, the increase in NOS activity associated with D-Asp administration in the Harderian gland suggests a potential capability of D-Asp to induce vasodilatation. In mammals, an increase in local concentrations of D-Asp facilitates the secretion of anterior pituitary hormones, i.e., PRL, LH and GH, whereas it inhibits the secretion of POMC/α-MSH from the intermediate pituitary and of oxytocin from the posterior pituitary. D-Asp also acts as a negative regulator for melatonin synthesis in the pineal gland. Further, D-Asp can stereo-specifically modulate the production of sex steroids, thus taking part in the endocrine control of reproductive activity. Although D-Asp receptors remain to be characterized, gene expression of NR1 and NR2 subunits of NMDAr responds to D-Asp in the testis.

摘要

游离的 D-天冬氨酸(D-Asp)在腺组织中大量存在。本文综述了脊椎动物外分泌腺和内分泌腺中 D-Asp 的现有研究工作,重点关注其功能作用。在唾液腺中检测到内源性 D-Asp。腮腺在发育过程中 D-Asp 水平较高,这表明该氨基酸参与早期发育阶段和/或分化过程的调节。D-Asp 在哈德氏腺中起重要作用,它通过激活 ERK1/2 途径引发外分泌。有趣的是,在哈德氏腺中,与给予 D-Asp 相关的一氧化氮合酶(NOS)活性增加表明 D-Asp 具有诱导血管舒张的潜在能力。在哺乳动物中,局部 D-Asp 浓度的增加促进垂体前叶激素(即催乳素、促黄体生成素和生长激素)的分泌,而抑制垂体中间叶 POMC/α-MSH 和垂体后叶催产素的分泌。D-Asp 在松果体中还作为褪黑素合成的负调节因子。此外,D-Asp 可以立体特异性地调节性类固醇的产生,从而参与生殖活动的内分泌控制。尽管 D-Asp 受体有待进一步鉴定,但睾丸中 NMDAr 的 NR1 和 NR2 亚基的基因表达对 D-Asp 有反应。

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