Ottiger H P, Battenberg E F, Tsou A P, Bloom F E, Sutcliffe J G
Department of Molecular Biology, Research Institute of Scripps Clinic, La Jolla, California 92037.
J Neurosci. 1990 Sep;10(9):3135-47. doi: 10.1523/JNEUROSCI.10-09-03135.1990.
The rat 1B1075 mRNA encodes a 533-residue novel chromogranin/secretogranin-like acidic protein that contains an apparent secretion signal, several pairs of tandem basic residues, and internally repeated sequence elements. 1B1075 transcripts are detected, by blotting and in situ hybridization, at the highest levels in the neocortex, hippocampus, cerebellar cortex, selected pontine and diencephalic nuclei, and presumptive pituitary corticotrophs, at lower levels in specific nuclei in most other brain regions, but in none of several other tissues. Utilizing antisera to several nonoverlapping synthetic peptide fragments of the predicted protein sequence, we detect a brain- and pituitary-specific 57-kDa protein in cellular processes and fiber tracts, generally consistent with axonal transport from the cell bodies identified by in situ hybridization. Ultrastructural studies demonstrate that this protein is a component of intraneuronal vesicles in axons and vesicle-like structures in dendrites. Based on these data, we suggest the name Secretogranin III for the 1B1075 gene product. In related collaborative studies, a mouse deleted for the 1B1075-homologous gene has been produced that should allow assessment of its physiological role.
大鼠1B1075 mRNA编码一种由533个氨基酸组成的新型嗜铬粒蛋白/分泌粒蛋白样酸性蛋白,该蛋白含有一个明显的分泌信号、几对串联碱性残基以及内部重复序列元件。通过印迹法和原位杂交检测发现,1B1075转录本在新皮质、海马体、小脑皮质、特定的脑桥和间脑核以及假定的垂体促肾上腺皮质激素细胞中表达水平最高,在大多数其他脑区的特定核中表达水平较低,但在其他几种组织中均未检测到。利用针对预测蛋白序列的几个不重叠合成肽片段的抗血清,我们在细胞突起和纤维束中检测到一种脑和垂体特异性的57 kDa蛋白,这与原位杂交确定的细胞体的轴突运输总体一致。超微结构研究表明,该蛋白是轴突内神经元内囊泡和树突中囊泡样结构的一个组成部分。基于这些数据,我们建议将1B1075基因产物命名为分泌粒蛋白III。在相关的合作研究中,已经培育出一种缺失1B1075同源基因的小鼠,这将有助于评估其生理作用。