Department of Pathology and Laboratory Medicine, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA 90095, USA.
Department of Pathology, Case Western Reserve University School of Medicine, Cleveland, OH 44106, USA.
Glycobiology. 2017 Jul 1;27(7):619-624. doi: 10.1093/glycob/cwx036.
The biological impact of glycans is as diverse and complex as the impact of proteins on biology. Familiar roles include those as a protein folding checkpoint in the endoplasmic reticulum and as a modulator of the serum half-life of secreted glycoproteins, but it has become clear over the last several decades that glycans are key signaling moieties, participate in cell-cell interactions and modulate the function of individual proteins, to name but a few examples. In the immune system, the majority of microbial "patterns" are glycans or glycoconjugates, while virtually all cell surface receptors are glycoproteins, and antibody glycosylation critically influences antibody function. In order to provide a simple contextual framework to understand the myriad roles, glycans play in immunity, we propose that glycan effects are considered direct or indirect, depending on their direct participation or their indirect effects on other components in a given biological process or pathway. Here, we present the published evidence that supports this framework, which ultimately leads to the conclusion that we should learn to embrace the complexity inherent to the glycome and its potential as a largely uncharted but target rich area of new therapeutic investigation.
糖链的生物学作用与蛋白质对生物学的影响一样多样且复杂。人们熟知的作用包括在内质网中作为蛋白质折叠的检查点,以及作为分泌糖蛋白血清半衰期的调节剂,但在过去几十年中已经清楚的是,糖链是关键的信号部分,参与细胞-细胞相互作用,并调节单个蛋白质的功能,仅举几个例子。在免疫系统中,大多数微生物“模式”是糖链或糖缀合物,而实际上所有细胞表面受体都是糖蛋白,抗体糖基化对抗体功能至关重要。为了提供一个简单的上下文框架来理解糖链在免疫中的众多作用,我们提出根据其直接参与或对给定生物过程或途径中的其他成分的间接影响,将糖链的作用分为直接或间接作用。在这里,我们提出了支持这一框架的已发表证据,最终得出的结论是,我们应该学会接受聚糖固有的复杂性及其作为一个尚未充分探索但具有丰富潜在治疗靶点的领域的潜力。