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The giant protein AHNAK involved in morphogenesis and laminin substrate adhesion of myelinating Schwann cells

层粘连蛋白 肌营养不良聚糖 生物 基底层 细胞生物学 雪旺细胞 形态发生 基底膜 细胞粘附分子 髓鞘 细胞粘附 神经科学 细胞外基质 解剖 中枢神经系统 细胞 生物化学 超微结构 基因
作者
Cláudio Salim,Ysander von Boxberg,Jeanine Altério,Sophie Féréol,Fatiha Nothias
出处
期刊:Glia [Wiley]
卷期号:57 (5): 535-549 被引量:34
标识
DOI:10.1002/glia.20782
摘要

Abstract Within the nervous system, expression of the intriguing giant protein AHNAK had been reported so far only for blood–brain barrier forming vascular endothelium. In a screen for genes upregulated after spinal cord injury, we recently identified ahnak as being highly expressed by non‐neuronal cells invading the lesion, delimiting the interior surface of cystic cavities in front of barrier‐forming astrocytes. Here, we show for the first time that AHNAK is constitutively expressed in peripheral nervous system, notably by myelinating Schwann cells (SCs), in which we investigated its function. During sciatic nerve development, AHNAK is redistributed from adaxonal toward abaxonal SC compartments in contact with basement membrane. AHNAK labeling on myelinated fibers from adult nerve delineates the so‐called “Cajal bands,” constituting the residual peripheral SC cytoplasm. Its distribution pattern is complementary to that of periaxin, known to be involved in the myelination process. In vitro , nonconfluent cultured primary SCs seeded on laminin express high levels of AHNAK concentrated in their processes, whereas at confluence, AHNAK is downregulated together with laminin receptor dystroglycan. AHNAK silencing by siRNA interference affects SC morphology and laminin‐substrate attachment, as well as expression and distribution of dystroglycan. Thus, our results clearly show the implication of AHNAK in SC adhesion to laminin, probably via targeting of the dystroglycan‐associated receptor complex. These findings are of high interest regarding the importance of SC‐basal lamina interactions for myelination and myelin maintenance, and open up new perspectives for investigations of the molecular mechanisms underlying demyelinating neuropathies. © 2008 Wiley‐Liss, Inc.
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