Melrose James
Raymond Purves Bone and Joint Research Laboratories, Kolling Institute of Medical Research, Faculty of Medicine and Health, The University of Sydney and the Northern Sydney Local Health District, Royal North Shore Hospital, St. Leonards, Sydney, New South Wales, Australia.
Graduate School of Biomedical Engineering, Faculty of Engineering, University of New South Wales, Sydney, New South Wales, Australia.
Am J Physiol Cell Physiol. 2025 Jul 1;329(1):C251-C271. doi: 10.1152/ajpcell.00268.2025. Epub 2025 Jun 3.
The aim of this study was to illustrate the biodiverse properties of keratan sulfate (KS) proteoglycans (PGs), their varied functions in tissues, and emerging roles for low sulfation isoforms of KSPGs now detectable due to the development of some novel KS antibodies. KS is a glycosaminoglycan (GAG), of diverse structure and functional properties and decorates a large range of PGs and equips these with cell regulatory properties. KSPGs also have biophysical roles in tissue stabilization and specific roles in electroconductive bioregulation of neural processes controlling tissue functions. Compared with the multitude of studies on other GAGs, KS has been rather neglected. In the past, the major focus was on the biology of high charge density isoforms of KS. In the present day, the development of antibodies that can now detect low sulfation isoforms of KS have demonstrated their potential roles in novel cell regulatory processes adding to the diverse bioregulatory properties of KSPGs. KS and KSPGs are now entering new areas in bioregulation adding to the functional roles of PGs in the regulation of connective tissue form and function in health and disease.
本研究的目的是阐述硫酸角质素(KS)蛋白聚糖(PGs)的生物多样性特性、它们在组织中的多种功能,以及由于一些新型KS抗体的开发,现在可检测到的低硫酸化KSPG亚型的新作用。KS是一种糖胺聚糖(GAG),具有多样的结构和功能特性,修饰多种PGs并赋予它们细胞调节特性。KSPGs在组织稳定中也具有生物物理作用,在控制组织功能的神经过程的导电生物调节中具有特定作用。与对其他GAGs的大量研究相比,KS一直受到相当程度的忽视。过去,主要关注的是高电荷密度KS亚型的生物学特性。如今,能够检测KS低硫酸化亚型的抗体的开发,已证明它们在新的细胞调节过程中的潜在作用,这增加了KSPGs多样的生物调节特性。KS和KSPGs现在正进入生物调节的新领域,这增加了PGs在健康和疾病中调节结缔组织形态和功能的功能作用。