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Tumor Suppressor Schwannomin/Merlin Is Critical for the Organization of Schwann Cell Contacts in Peripheral Nerves

机译:肿瘤抑制物Schwannomin / Merlin对于周围神经中的Schwann细胞接触组织至关重要

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摘要

Schwannomin/merlin is the product of a tumor suppressor gene mutated in neurofibromatosis type 2 (NF2). Although the consequences of NF2 mutations on Schwann cell proliferation are well established, the physiological role of schwannomin in differentiated cells is not known. To unravel this role, we studied peripheral nerves in mice overexpressing in Schwann cells schwannomin with a deletion occurring in NF2 patients (P0–SCH–Δ39–121) or a C-terminal deletion. The myelin sheath and nodes of Ranvier were essentially preserved in both lines. In contrast, the ultrastructural and molecular organization of contacts between Schwann cells and axons in paranodal and juxtaparanodal regions were altered, with irregular juxtaposition of normal and abnormal areas of contact. Similar but more severe alterations were observed in mice with conditional deletion of the Nf2 gene in Schwann cells. The number of Schmidt–Lanterman incisures, which are cytoplasmic channels interrupting the compact myelin and characterized by distinct autotypic contacts, was increased in the three mutant lines. P0–SCH–Δ39–121 and conditionally deleted mice displayed exuberant wrapping of nonmyelinated fibers and short internodes, an abnormality possibly related to altered control of Schwann cell proliferation. In support of this hypothesis, Schwann cell number was increased along fibers before myelination in P0–SCH–Δ39–121 mice but not in those with C-terminal deletion. Schwann cell numbers were also more numerous in mice with conditional deletion. Thus, schwannomin plays an important role in the control of Schwann cell number and is necessary for the correct organization and regulation of axoglial heterotypic and glio-glial autotypic contacts.
机译:Schwannomin / merlin是在2型神经纤维瘤病(NF2)中突变的抑癌基因的产物。尽管已经很好地确定了NF2突变对雪旺细胞增殖的影响,但人们还不清楚神经鞘氨醇在分化细胞中的生理作用。为了阐明这一作用,我们研究了雪旺氏细胞施万诺明中过表达的小鼠周围神经,其中NF2患者发生过缺失(P0–SCH–Δ39–121)或C端缺失。 Ranvier的髓鞘和节基本上都保留在这两个系中。相反,在结节旁和近节旁结节中,雪旺氏细胞与轴突之间的接触的超微结构和分子组织发生了变化,正常和异常接触区并列排列不规则。在有条件缺失雪旺细胞中Nf2基因的小鼠中观察到类似但更严重的变化。在三个突变株系中,Schmidt–Lanterman侵害的数量增加,这些侵害是打断紧密髓鞘的细胞质通道,并具有明显的典型性接触。 P0–SCH–Δ39–121和有条件删除的小鼠表现出旺盛的非髓鞘纤维包裹和节间短包裹,这种异常可能与雪旺氏细胞增殖控制的改变有关。为支持这一假设,P0–SCH–Δ39–121小鼠髓鞘形成之前,沿纤维的雪旺氏细胞数增加,但C末端缺失的小鼠则没有。有条件缺失的小鼠中雪旺氏细胞数量也更多。因此,施万诺明在控制雪旺氏细胞数中起重要作用,对于正确地组织和调节轴突异型和胶质神经胶质自发性接触是必需的。

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