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High levels of Id1 expression define B1 type adult neural stem cells.

机译:高水平的Id1表达定义了B1型成人神经干细胞。

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Defining the molecular identity of stem cells may be critical for formulating a rational strategy for the therapeutic intervention of stem cell dysfunction. We find that high expression of Id1, a dominant-negative helix-loop-helix transcriptional regulator, identifies a rare population of GFAP(+) astrocytes with stem cell attributes among the subventricular astrocytes in the adult brain. The rare, long-lived, and relatively quiescent Id1(high) astrocytes with morphology characteristic of B1 type astrocytes self-renew and generate migratory neuroblasts that differentiate into olfactory bulb interneurons. Cultured Id1(high) neural stem cells can self-renew asymmetrically and generate a stem and a differentiated cell expressing progressively lower levels of Id1, revealing an Id1 gradient in unperturbed cells of subventricular neurogenic lineages. Moreover, Id genes are necessary to confer self-renewal capacity, a characteristic of stem cell identity. We suggest that high expression of a single transcriptional regulator, Id1, molecularly defines the long-sought-after B1 type adult neural stem cells.
机译:定义干细胞的分子身份对于制定合理的干细胞功能障碍治疗干预策略可能至关重要。我们发现Id1,占主导地位的负螺旋-环-螺旋转录调节剂的高表达,确定成人脑室下星形胶质细胞中具有干细胞属性的GFAP(+)星形胶质细胞的罕见群体。具有B1型星形胶质细胞形态特征的稀有,寿命长且相对静止的Id1(高)星形胶质细胞会自我更新并生成可分化为嗅球间神经元的迁徙神经母细胞。培养的Id1(高)神经干细胞可以不对称自我更新,生成干细胞和分化的细胞,表达Id1的水平逐渐降低,从而在心室下神经源性世系的正常细胞中显示出Id1梯度。此外,Id基因对于赋予自我更新能力是必要的,这是干细胞身份的特征。我们建议,高表达的单一转录调节剂,Id1,在分子上定义了人们期待已久的B1型成人神经干细胞。

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