Boyd Andrew, Montandon Margo, Wood Alasdair J, Currie Peter D
Australian Regenerative Medicine Institute, Monash University, Clayton, Victoria, Australia.
EMBL Australia, Monash University, Clayton, Victoria, Australia.
Bioessays. 2022 May;44(5):e2100270. doi: 10.1002/bies.202100270. Epub 2022 Mar 1.
The recently uncovered role of Fukutin-related protein (FKRP) in fibronectin glycosylation has challenged our understanding of the basis of disease pathogenesis in the muscular dystrophies. FKRP is a Golgi-resident glycosyltransferase implicated in a broad spectrum of muscular dystrophy (MD) pathologies that are not fully attributable to the well-described α-Dystroglycan hypoglycosylation. By revealing a new role for FKRP in the glycosylation of fibronectin, a modification critical for the development of the muscle basement membrane (MBM) and its associated muscle linkages, new possibilities for understanding clinical phenotype arise. This modification involves an interaction between FKRP and myosin-10, a protein involved in the Golgi organization and function. These observations suggest a FKRP nexus exists that controls two critical aspects to muscle fibre integrity, both fibre stability at the MBM and its elastic properties. This review explores the new potential disease axis in the context of our current knowledge of muscular dystrophies.
福库汀相关蛋白(FKRP)在纤连蛋白糖基化中最近被揭示的作用,挑战了我们对肌营养不良症发病机制基础的理解。FKRP是一种驻留在高尔基体的糖基转移酶,与多种肌营养不良(MD)病理相关,这些病理不能完全归因于已充分描述的α- dystroglycan低糖基化。通过揭示FKRP在纤连蛋白糖基化中的新作用,这一修饰对肌肉基底膜(MBM)及其相关肌肉连接的发育至关重要,从而出现了理解临床表型的新可能性。这种修饰涉及FKRP与肌球蛋白-10之间的相互作用,肌球蛋白-10是一种参与高尔基体组织和功能的蛋白质。这些观察结果表明存在一个FKRP联系,它控制着肌纤维完整性的两个关键方面,即MBM处的纤维稳定性及其弹性特性。本综述在我们目前对肌营养不良症的认识背景下探讨了新的潜在疾病轴。