缺乏Glypican 4的小鼠表现出幼年多动和成年社会互动缺陷。

Cari Dowling, Nicola J Allen
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引用次数: 19

摘要

Glypican 4 (Gpc4)是一种硫酸肝素蛋白多糖,在发育中的大脑中调节谷氨酸突触的形成和功能。Gpc4 KO小鼠的兴奋性突触数量减少,突触GluA1 AMPA受体减少,导致突触传递减少。此外,Gpc4的表达减少与自闭症谱系障碍(ASD)有关。Gpc4在出生后的发育过程中在星形胶质细胞和神经元中均有表达,星形胶质细胞在幼年期表达较高,神经元表达随成熟而增加。因此,我们想知道缺乏Gpc4的小鼠是否表现出与GluA1或ASD缺失一致的行为改变,如果是这样,它们是发生在星形胶质细胞Gpc4高的幼年时期,还是发生在星形胶质细胞和神经元都表达Gpc4的成年时期。我们发现幼鼠(P14) Gpc4 KO小鼠在开阔场地表现出多动症,在成年小鼠(3个月)中得到纠正。成年Gpc4 KO小鼠在社交新颖性方面表现出缺陷,而工作记忆和焦虑等非社交行为则未受影响。因此,Gpc4 KO小鼠表现出年龄特异性的行为改变,这与GluA1突触水平的改变和与ASD相关的行为一致。
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Mice Lacking Glypican 4 Display Juvenile Hyperactivity and Adult Social Interaction Deficits.

Glypican 4 (Gpc4) is a heparan sulfate proteoglycan that regulates glutamatergic synapse formation and function in the developing brain. Gpc4 KO mice have been shown to have decreased excitatory synapse number and less synaptic GluA1 AMPA receptors, leading to decreased synaptic transmission. Further, decreased expression of Gpc4 has been linked to autism spectrum disorder (ASD). Gpc4 is expressed by both astrocytes and neurons during postnatal development, with astrocyte expression higher in juvenile stages, and neuronal expression increasing with maturation. We therefore asked if mice lacking Gpc4 display behavioral alterations that are consistent with loss of GluA1 or ASD, and if so if they occur at juvenile ages when astrocyte Gpc4 is high, or at adult ages when both astrocytes and neurons express Gpc4. We found that juvenile (P14) Gpc4 KO mice display hyperactivity in the open field, which is corrected in adult mice (3 month). Adult Gpc4 KO mice show deficient behavior in social novelty, whilst non-social behaviors such as working memory and anxiety are unaffected. Thus, Gpc4 KO mice show age-specific behavioral alterations that are consistent with altered synaptic levels of GluA1 and behaviors associated with ASD.

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