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小鼠釉原蛋白初级RNA转录本的可变剪接导致了釉原蛋白的异质性。

Alternative splicing of the mouse amelogenin primary RNA transcript contributes to amelogenin heterogeneity.

作者信息

Lau E C, Simmer J P, Bringas P, Hsu D D, Hu C C, Zeichner-David M, Thiemann F, Snead M L, Slavkin H C, Fincham A G

机构信息

University of Southern California, Center for Craniofacial Molecular Biology, Los Angeles 90033.

出版信息

Biochem Biophys Res Commun. 1992 Nov 16;188(3):1253-60. doi: 10.1016/0006-291x(92)91366-x.

Abstract

A heterogeneous population of amelogenin proteins is derived from a single copy of the mouse amelogenin gene. To investigate the one gene--multiple protein enigma, we designed a study to distinguish between alternative splicing and proteolytic cleavage models. A pulse of [35S]methionine labeling demonstrated that multiple amelogenins are synthesized concurrently, a result consistent with an alternative splicing mechanism. Using reverse transcription and polymerase chain reaction we cloned a segment from the 5' end of a mouse amelogenin mRNA and connected it to a previously isolated abbreviated cDNA clone. Four additional cDNAs derived from alternatively spliced amelogenin mRNAs have been cloned and characterized. The five transcripts encode amelogenins 180, 156, 141, 74, and 59 amino acids in length.

摘要

牙釉蛋白的异质群体源自小鼠牙釉蛋白基因的单一拷贝。为了探究一个基因产生多种蛋白质的谜题,我们设计了一项研究来区分可变剪接模型和蛋白水解切割模型。[35S]甲硫氨酸脉冲标记表明多种牙釉蛋白是同时合成的,这一结果与可变剪接机制一致。我们利用逆转录和聚合酶链反应从鼠牙釉蛋白mRNA的5'端克隆了一个片段,并将其连接到先前分离的一个缩短的cDNA克隆上。另外四个源自可变剪接牙釉蛋白mRNA的cDNA已被克隆并进行了表征。这五种转录本编码的牙釉蛋白长度分别为180、156、141、74和59个氨基酸。

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