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Activation of NMDA receptors promotes dendritic spine development through MMP-mediated ICAM-5 cleavage

机译:NMDA受体的激活通过MMP介导的ICAM-5裂解促进树突棘发育。

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Matrix metalloproteinase (MMP)-2 and -9 are pivotal in remodeling many tissues. However, their functions and candidate substrates for brain development are poorly characterized. Intercellular adhesion molecule-5 (ICAM-5; Telencephalin) is a neuronal adhesion molecule that regulates dendritic elongation and spine maturation. We find that ICAM-5 is cleaved from hippocampal neurons when the cells are treated with N -methyl-d-aspartic acid (NMDA) or α-amino-3-hydroxy-5-methylisoxazole-propionic acid (AMPA). The cleavage is blocked by MMP-2 and -9 inhibitors and small interfering RNAs. Newborn MMP-2– and MMP-9–deficient mice brains contain more full-length ICAM-5 than wild-type mice. NMDA receptor activation disrupts the actin cytoskeletal association of ICAM-5, which promotes its cleavage. ICAM-5 is mainly located in dendritic filopodia and immature thin spines. MMP inhibitors block the NMDA-induced cleavage of ICAM-5 more efficiently in dendritic shafts than in thin spines. ICAM-5 deficiency causes retraction of thin spine heads in response to NMDA stimulation. Soluble ICAM-5 promotes elongation of dendritic filopodia from wild-type neurons, but not from ICAM-5–deficient neurons. Thus, MMPs are important for ICAM-5–mediated dendritic spine development.
机译:基质金属蛋白酶(MMP)-2和-9在重塑许多组织中至关重要。但是,它们的功能和大脑发育的候选底物的特性较差。细胞间黏附分子5(ICAM-5; Telencephalin)是调节树突伸长和脊柱成熟的神经元黏附分子。我们发现,当细胞用N-甲基-d-天冬氨酸(NMDA)或α-氨基-3-羟基-5-甲基异恶唑-丙酸(AMPA)处理时,ICAM-5从海马神经元中裂解。切割被MMP-2和-9抑制剂和小的干扰RNA阻断。新生MMP-2和MMP-9缺陷小鼠的大脑比野生型小鼠的大脑包含更多的全长ICAM-5。 NMDA受体激活破坏了ICAM-5的肌动蛋白细胞骨架结合,从而促进了其裂解。 ICAM-5主要位于树突状丝状伪足和未成熟的细刺中。 MMP抑制剂在树突状干中比在细刺中更有效地阻断NMDA诱导的ICAM-5裂解。 ICAM-5缺乏症会导致对NMDA刺激的脊柱细头回缩。可溶性ICAM-5促进野生型神经元的树突状丝状伪足伸长,但不促进ICAM-5缺陷神经元的树突状丝状伪足伸长。因此,MMP对于ICAM-5介导的树突棘发育很重要。

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