血管生成
脊髓
医学
脊髓病
发病机制
Piwi相互作用RNA
下调和上调
减压
神经科学
生物信息学
癌症研究
病理
核糖核酸
外科
基因
RNA干扰
生物
遗传学
精神科
作者
Yongheng Xie,Yiling Peng,Tianyu Qin,Cuimei Chen,Zhenxiao Ren,Naibo Feng,Chungeng Liu,Songlin Peng,Houqing Long
标识
DOI:10.1002/advs.202504246
摘要
Degenerative cervical myelopathy (DCM) is the most common cause of spinal cord dysfunction worldwide. Although surgical decompression can halt disease progression and improve neurological function in most patients, there remains a subset for whom functional improvement is limited. Impaired spinal cord perfusion is a pathological hallmark of DCM, which highlights the importance of restoring blood flow to enhance neurological outcomes. Here, this work identifies a novel angiogenesis-associated PIWI-interacting RNA (AGAPIR) that enhances angiogenesis and motor function following spinal cord decompression. Using piRNA sequencing, this work identifies AGAPIR as a key regulator of DCM pathogenesis. This work observes significant upregulation of AGAPIR expression in the spinal cord following surgical decompression, which is correlated with enhanced angiogenesis. Overexpression of AGAPIR markedly improves blood vessel formation and promotes motor function in mice following spinal cord decompression. Using RNA sequencing and cellular validation, this work finds that AGAPIR directly interacts with USP18, leading to an increase in its protein expression level and stabilization of HIF-1α protein via its deubiquitinating activity. This data demonstrate that AGAPIR is a novel piRNA that further improves the functional status of DCM mice following surgical decompression. These results provide the pioneering evidence and novel insights into piRNA-directed therapeutic strategies for DCM.
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