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Both Cell-Autonomous and Cell Non-Autonomous Functions of GAP-43 are Required for Normal Patterning of the Cerebellum In Vivo

机译:GAP-43的细胞自主功能和细胞非自主功能都是体内小脑正常模式所必需的

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摘要

Growth-associated protein 43 (GAP-43) is required for development of a functional cerebral cortex in vertebrates; however, its role in cerebellar development is not well understood. Recently, we showed that absence of GAP-43 caused defects in proliferation, differentiation, and polarization of cerebellar granule cells. In this paper, we show that absence of GAP-43 causes defects in cerebellar patterning that reflect both cell-autonomous and non-autonomous functions. Cell-autonomous effects of GAP-43 impact precursor proliferation and axon targeting: In its absence, (1) proliferation of granule cell precursors in response to sonic hedgehog and fibroblast growth factor is inhibited, (2) proliferation of neuroepithelial precursors is inhibited, and (3) targeting of climbing fibers to the central lobe is disrupted. Cell non-autonomous effects of GAP-43 impact differentiated Purkinje cells in which GAP-43 has been downregulated: In its absence, both maturation and mediolateral patterning of Purkinje cells are inhibited. Both cell-autonomous and non-autonomous functions of GAP-43 involve its phosphorylation by protein kinase C. GAP-43 is phosphorylated in granule cell precursors in response to sonic hedgehog in vitro, and phosphorylated GAP-43 is also found in proliferating neuroepithelium and climbing fibers. Phosphorylated GAP-43 is specifically enriched in the presynaptic terminals of parallel and climbing fibers that innervate Purkinje cell bodies and dendrites. The cell-autonomous and non-autonomous effects of GAP-43 converge on the central lobe. The multiple effects of GAP-43 on cerebellar development suggest that it is a critical downstream transducer of signaling mechanisms that integrate generation of cerebellar structure with functional parcellation at the central lobe.
机译:生长相关蛋白43(GAP-43)是脊椎动物中功能性大脑皮层发育所必需的。然而,其在小脑发育中的作用尚不十分清楚。最近,我们表明,GAP-43的缺失会导致小脑颗粒细胞的增殖,分化和极化缺陷。在本文中,我们表明,GAP-43的缺失会导致小脑图案缺陷,从而反映细胞自主功能和非自主功能。 GAP-43的细胞自主效应会影响前体细胞的增殖和轴突靶向作用:在缺席的情况下,(1)响应声波刺猬和成纤维细胞生长因子的颗粒细胞前体细胞的增殖受到抑制,(2)神经上皮前体细胞的增殖受到抑制,并且(3)攀登纤维对中央叶的靶向被破坏。 GAP-43的细胞非自主效应会影响已下调GAP-43的分化的Purkinje细胞:在不存在的情况下,Purkinje细胞的成熟和中外侧图案都会受到抑制。 GAP-43的细胞自主功能和非自主功能均涉及蛋白激酶C的磷酸化作用。GAP-43在颗粒细胞前体中被磷酸化以响应体外的声波刺猬,并且磷酸化的GAP-43在增殖的神经上皮和攀岩纤维。磷酸化的GAP-43在神经和浦肯野细胞体和树突分布的平行和攀爬纤维的突触前末端中特别富集。 GAP-43的细胞自主和非自主效应在中央叶上收敛。 GAP-43对小脑发育的多种作用表明,它是信号传导机制的关键下游转导子,整合了小脑结构的产生与中央叶的功能性细胞分裂。

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