首页> 外文期刊>The Journal of Experimental Biology >The novel guanylyl cyclase MsGC-I is strongly expressed in higher-orderneuropils in the brain of Manduca sexta
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The novel guanylyl cyclase MsGC-I is strongly expressed in higher-orderneuropils in the brain of Manduca sexta

机译:新型鸟苷酰环化酶MsGC-I在满天蛾的大脑中高阶神经元中强烈表达。

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摘要

Guanylyl cyclases are usually characterized as being either soluble (sGCs) or receptor (rGCs), We have recently cloned a novel guanylyl cyclase, MsGC-I, from the developing nervous system of the hawkmoth Manduca sexta that cannot be classified as either an sGC or an rGC, MsGC-I shows highest sequence identity with receptor guanylyl cyclases throughout its catalytic and dimerization domains, but does not contain the ligand-binding, transmembrane or kinase-like domains characteristic of receptor guanylyl cyclases. In addition, MsGC-I contains a C-terminal extension of 149 amino acid residues. In this paper, we report the expression of MsGC-I in the adult. Northern blots show that it is expressed preferentially in the nervous system, with high levels in the pharate adult brain and antennae. In the antennae, immunohistochemical analyses show that it is expressed in the cell bodies and dendrites, but not axons, of olfactory receptor neurons. In the brain, it is expressed in a variety of sensory neuropils including the antennal and optic lobes. It is also expressed in structures involved in higher-order processing including the mushroom bodies and central complex. This complicated expression pattern suggests that this novel guanylyl cyclase plays an important role in mediating cyclic GMP levels in the nervous system of Manduca sexta.
机译:鸟苷酸环化酶通常被表征为可溶的(sGCs)或受体(rGCs)。我们最近从鹰蛾曼达克六性鱼的发育中的神经系统中克隆了一种新的鸟苷酸环化酶MsGC-1,该类不能被分类为sGC或在rGC中,MsGC-1在其催化和二聚化域中与受体鸟苷酸环化酶显示出最高的序列同一性,但不包含受体鸟苷酸环化酶的配体结合,跨膜或激酶样结构域。另外,MsGC-1包含149个氨基酸残基的C端延伸。在本文中,我们报告了MsGC-I在成人中的表达。 Northern印迹表明,它优先在神经系统中表达,在成年的成年大脑和触角中高水平表达。在触角中,免疫组织化学分析表明它在嗅觉受体神经元的细胞体和树突中表达,但在轴突中不表达。在大脑中,它在各种触觉神经纤维中表达,包括触角和视叶。它也以参与高阶加工的结构形式表达,包括蘑菇体和中央复合体。这种复杂的表达方式表明,这种新型的鸟苷酸环化酶在介导曼杜卡六性神经系统中的循环GMP水平中起重要作用。

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