What Cyto- and Histochemistry Can Do to Crack the Sugar Code.

IF 1.6 4区 生物学 Q4 CELL BIOLOGY
Acta Histochemica Et Cytochemica Pub Date : 2021-04-28 Epub Date: 2021-04-17 DOI:10.1267/ahc.21-00017
Felix A Habermann, Herbert Kaltner, Alonso M Higuero, Gabriel García Caballero, Anna-Kristin Ludwig, Joachim C Manning, José Abad-Rodríguez, Hans-Joachim Gabius
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引用次数: 11

Abstract

As letters form the vocabulary of a language, biochemical 'symbols' (the building blocks of oligo- and polymers) make writing molecular messages possible. Compared to nucleotides and amino acids, sugars have chemical properties that facilitate to reach an unsurpassed level of oligomer diversity. These glycans are a part of the ubiquitous cellular glycoconjugates. Cyto- and histochemically, the glycans' structural complexity is mapped by glycophenotyping of cells and tissues using receptors ('readers', thus called lectins), hereby revealing its dynamic spatiotemporal regulation: these data support the concept of a sugar code. When proceeding from work with plant (haem)agglutinins as such tools to the discovery of endogenous (tissue) lectins, it became clear that a broad panel of biological meanings can indeed be derived from the sugar-based vocabulary (the natural glycome incl. post-synthetic modifications) by glycan-lectin recognition in situ. As consequence, the immunocyto- and histochemical analysis of lectin expression is building a solid basis for the steps toward tracking down functional correlations, for example in processes leading to cell adhesion, apoptosis, autophagy or growth regulation as well as targeted delivery of glycoproteins. Introduction of labeled tissue lectins to glycan profiling assists this endeavor by detecting counterreceptor(s) in situ. Combining these tools and their applications strategically will help to take the trip toward the following long-range aim: to compile a dictionary for the glycan vocabulary that translates each message (oligosaccharide) into its bioresponse(s), that is to crack the sugar code.

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细胞和组织化学如何破解糖密码?
就像字母构成语言的词汇一样,生化“符号”(低聚物和聚合物的组成部分)使书写分子信息成为可能。与核苷酸和氨基酸相比,糖的化学性质有助于达到无与伦比的低聚物多样性水平。这些聚糖是无处不在的细胞糖缀合物的一部分。细胞和组织化学上,聚糖的结构复杂性是通过使用受体(“读者”,因此称为凝集素)的细胞和组织的糖分型来绘制的,从而揭示了其动态时空调节:这些数据支持糖密码的概念。从植物(血红素)凝集素作为工具的研究进展到内源性(组织)凝集素的发现,很明显,通过聚糖-凝集素原位识别,确实可以从糖基词汇(天然糖素,包括合成后修饰)中获得广泛的生物学意义。因此,凝集素表达的免疫细胞和组织化学分析为追踪功能相关性的步骤奠定了坚实的基础,例如在导致细胞粘附、凋亡、自噬或生长调节以及糖蛋白靶向递送的过程中。将标记组织凝集素引入到聚糖谱分析中,通过原位检测反受体来协助这一努力。有策略地结合这些工具和它们的应用将有助于实现以下长期目标:编写一本糖词汇词典,将每种信息(低聚糖)翻译成其生物反应,即破解糖密码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Histochemica Et Cytochemica
Acta Histochemica Et Cytochemica 生物-细胞生物学
CiteScore
3.50
自引率
8.30%
发文量
17
审稿时长
>12 weeks
期刊介绍: Acta Histochemica et Cytochemica is the official online journal of the Japan Society of Histochemistry and Cytochemistry. It is intended primarily for rapid publication of concise, original articles in the fields of histochemistry and cytochemistry. Manuscripts oriented towards methodological subjects that contain significant technical advances in these fields are also welcome. Manuscripts in English are accepted from investigators in any country, whether or not they are members of the Japan Society of Histochemistry and Cytochemistry. Manuscripts should be original work that has not been previously published and is not being considered for publication elsewhere, with the exception of abstracts. Manuscripts with essentially the same content as a paper that has been published or accepted, or is under consideration for publication, will not be considered. All submitted papers will be peer-reviewed by at least two referees selected by an appropriate Associate Editor. Acceptance is based on scientific significance, originality, and clarity. When required, a revised manuscript should be submitted within 3 months, otherwise it will be considered to be a new submission. The Editor-in-Chief will make all final decisions regarding acceptance.
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