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神经元生长相关蛋白GAP-43可在非神经元细胞中诱导丝状伪足的形成。

The neuronal growth-associated protein GAP-43 induces filopodia in non-neuronal cells.

作者信息

Zuber M X, Goodman D W, Karns L R, Fishman M C

机构信息

Developmental Biology Laboratory, Massachusetts General Hospital Cancer Center, Boston.

出版信息

Science. 1989 Jun 9;244(4909):1193-5. doi: 10.1126/science.2658062.

Abstract

The neuron-specific protein GAP-43 is associated with the membrane of the nerve growth cone and thus may be important to the activity of this distinctive neuronal structure. Transient transfection of COS and NIH 3T3 cells with appropriate vectors resulted in expression of GAP-43 in these non-neuronal cells; as in neurons, transfected GAP-43 associated with the membrane. In addition, many long fine filopodial processes extended from the periphery of such transfected cells. Stable CHO cell lines expressing GAP-43 also exhibited processes that were more numerous, far longer, and more complex than those of CHO cell lines not transfected or transfected with control plasmids. Thus GAP-43 may directly contribute to growth cone activity by regulating cell membrane structure and enhancing extension of filopodial processes.

摘要

神经元特异性蛋白GAP - 43与神经生长锥的膜相关联,因此可能对这种独特的神经元结构的活性很重要。用合适的载体对COS和NIH 3T3细胞进行瞬时转染,导致这些非神经元细胞中GAP - 43的表达;与在神经元中一样,转染的GAP - 43与膜相关联。此外,许多长而细的丝状伪足从这些转染细胞的周边伸出。表达GAP - 43的稳定CHO细胞系也表现出比未转染或用对照质粒转染的CHO细胞系更多、长得多且更复杂的突起。因此,GAP - 43可能通过调节细胞膜结构和增强丝状伪足突起的延伸直接促进生长锥活性。

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