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编码兔髓磷脂P2蛋白的克隆cDNA的特性分析。

Characterization of a cloned cDNA encoding rabbit myelin P2 protein.

作者信息

Narayanan V, Barbosa E, Reed R, Tennekoon G

机构信息

Department of Neurology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

J Biol Chem. 1988 Jun 15;263(17):8332-7.

PMID:2453513
Abstract

Myelin P2 is a 14,800-Da cytosolic protein found in rabbit sciatic nerves. It belongs to a family of fatty acid binding proteins and shows a 72% amino acid sequence similarity to aP2/422, the adipocyte lipid binding protein, a 58% sequence similarity to rat heart fatty acid binding protein, and a 40% sequence similarity to cellular retinoic acid binding protein. In order to isolate cDNA clones representing P2, a cDNA library was constructed from poly(A+) RNA isolated from sciatic nerves of 10-day-old rabbit pups. By use of a mixed synthetic oligonucleotide probe based on the rabbit P2 amino sequence, 12 cDNA clones were selected from about 25,000 recombinants. Four of these were further characterized. They contained an open reading frame, which when translated, agreed at 128 out of 131 residues with the known rabbit P2 amino acid sequence. These cDNAs recognize a 1.9-kilobase mRNA present in sciatic nerve, spinal cord, and brain, but not present in liver or heart. The levels of P2 mRNA parallel myelin formation in sciatic nerve and spinal cord with maximal amounts being detected at about 15 postnatal days. This initial study will allow characterization of the P2 gene and its regulation, as well as further studies into the role of P2, the first metabolically active myelin-specific protein to be characterized at the genetic level.

摘要

髓磷脂P2是一种在兔坐骨神经中发现的14,800道尔顿的胞质蛋白。它属于脂肪酸结合蛋白家族,与脂肪细胞脂质结合蛋白aP2/422的氨基酸序列相似度为72%,与大鼠心脏脂肪酸结合蛋白的序列相似度为58%,与细胞视黄酸结合蛋白的序列相似度为40%。为了分离代表P2的cDNA克隆,从10日龄兔幼崽的坐骨神经中分离出的聚腺苷酸(poly(A+))RNA构建了一个cDNA文库。通过使用基于兔P2氨基酸序列的混合合成寡核苷酸探针,从约25,000个重组体中筛选出12个cDNA克隆。其中4个被进一步鉴定。它们包含一个开放阅读框,翻译后在131个残基中的128个与已知的兔P2氨基酸序列一致。这些cDNA识别坐骨神经、脊髓和脑中存在的1.9千碱基mRNA,但在肝脏或心脏中不存在。P2 mRNA的水平与坐骨神经和脊髓中的髓磷脂形成平行,在出生后约15天检测到最大量。这项初步研究将有助于对P2基因及其调控进行表征,并进一步研究P2的作用,P2是第一个在遗传水平上被表征的具有代谢活性的髓磷脂特异性蛋白。

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