糖感知感受器和感受器分泌信号。

Q1 Health Professions
Savani Anbalagan
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引用次数: 0

摘要

糖是主要的代谢物之一,是核酸合成和能量生产所必需的。此外,糖可以作为信号分子。为了在系统水平上研究糖信号,迫切需要系统地鉴定糖敏感蛋白和核酸。我建议使用“swodkoreceptor”和“swodkcrine signaling”这两个术语,它们来自波兰语“słodki”,意思是“甜的”,分别包含所有的糖感知蛋白和信号事件,而不考虑它们的细胞位置和信号域。该提案旨在促进蛋白质的纳入,如大肠杆菌LacI抑制因子作为异乳糖受体,人葡萄糖激酶调节蛋白(GCKR)作为果糖受体,以及其他基于糖结合的变构调节酶和转录因子作为糖敏感受体。此外,相互作用状态受糖结合调节的酶相互作用蛋白也被认为是糖受体。基于蛋白质和核酸的swodk受体的系统研究可能有助于识别细胞器特异性的swodk受体,并解决受体的二元性。研究生物体内和生物间的糖分泌信号及其与汽油分泌信号的串扰可能有助于了解糖稳态和信号失调引起的疾病的病因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Sugar-sensing swodkoreceptors and swodkocrine signaling

Sugar-sensing swodkoreceptors and swodkocrine signaling

Sugars are one of the major metabolites and are essential for nucleic acid synthesis and energy production. In addition, sugars can act as signaling molecules. To study sugar signaling at the systemic level, there is an urgent need to systematically identify sugar-sensing proteins and nucleic acids. I propose the terms “swodkoreceptor” and “swodkocrine signaling,” derived from the Polish word “słodki” meaning “sweet,” to comprise all sugar-sensing proteins and signaling events, respectively, regardless of their cellular location and signaling domains. This proposal is intended to facilitate the inclusion of proteins such as the Escherichia coli LacI repressor as an allolactose receptor, human glucokinase regulatory protein (GCKR) as a fructose receptor, and other sugar-binding based allosterically regulated enzymes and transcription factors as sugar-sensing receptors. In addition, enzyme-interacting proteins whose interaction state is regulated by sugar binding have also been proposed as sugar receptors. The systemic study of protein- and nucleic-acid-based swodkoreceptors may help to identify organelle-specific swodkoreceptors and to also address receptor duality. The study of intra- and inter-organism swodkocrine signaling and its crosstalk with gasocrine signaling may help to understand the etiology of diseases due to dysregulation in sugar homeostasis and signaling.

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来源期刊
CiteScore
5.50
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