A novel Ca2+ pump expressed in brain, kidney, and stomach is encoded by an alternative transcript of the slow-twitch muscle sarcoplasmic reticulum Ca-ATPase gene. Identification of cDNAs encoding Ca2+ and other cation-transporting ATPases using an oligonucleotide probe derived from the ATP-binding site.

The Journal of Biological Chemistry Pub Date : 1988-10-15
A M Gunteski-Hamblin, J Greeb, G E Shull
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Abstract

We describe the results of a study designed to identify cDNAs encoding Ca2+-transporting ATPases and other cation-transporting ATPases of the aspartylphosphate class. Rat brain, kidney, and stomach cDNA libraries were screened with an oligonucleotide hybridization probe corresponding to a 23-amino acid sequence from part of the ATP-binding site of the sarcoplasmic reticulum Ca-ATPase. This procedure resulted in the isolation of cDNAs encoding (i) the plasma membrane Ca-ATPase, (ii) an apparent Ca-ATPase that exhibits high amino acid similarity to the sarcoplasmic reticulum Ca2+ pumps, (iii) a transport ATPase of unknown ion specificity and (iv) two Ca-ATPase isoforms encoded by the gene for the slow-twitch muscle sarcoplasmic reticulum Ca-ATPase. Several isoforms of the Na,K-ATPase and gastric H,K-ATPase that had been characterized previously were also identified. The complete nucleotide sequences have been determined for the two classes of cDNA derived from alternatively spliced transcripts of the slow-twitch muscle sarcoplasmic reticulum Ca-ATPase gene. One of these cDNAs, isolated from the stomach library, encodes a Ca-ATPase that is identical to the skeletal muscle enzyme. The second class of cDNA, found in brain, kidney, and stomach libraries, is identical to that of the slow-twitch isoform throughout much of its length but encodes an alternative C terminus and has a different 3'-untranslated sequence. Whereas the muscle isoform consists of 997 amino acids and terminates with the sequence Ala-Ile-Leu-Glu, the second isoform is 1043 amino acids in length due to the replacement of these last 4 amino acids with a 50-amino acid sequence that contains a potential transmembrane domain followed by a consensus sequence for an N-linked glycosylation site.

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一种在脑、肾和胃中表达的新型Ca2+泵是由慢抽搐肌浆网ca - atp酶基因的另一转录本编码的。使用来自atp结合位点的寡核苷酸探针鉴定编码Ca2+和其他阳离子运输atp酶的cdna。
我们描述了一项研究的结果,旨在鉴定编码Ca2+转运atp酶和其他阳离子转运atp酶的天冬氨酸磷酸酯类的cdna。采用与肌浆网ca - atp酶部分atp结合位点的23个氨基酸序列相对应的寡核苷酸杂交探针筛选大鼠脑、肾和胃cDNA文库。这一过程分离了编码(i)质膜ca - atp酶的cdna, (ii)与肌浆网Ca2+泵具有高度氨基酸相似性的明显ca - atp酶,(iii)未知离子特异性的转运atp酶,以及(iv)由慢抽搐肌肌浆网ca - atp酶基因编码的两个ca - atp酶同工型。先前鉴定的Na, k - atp酶和胃H, k - atp酶的几个同工型也被鉴定出来。已经确定了两类cDNA的完整核苷酸序列,这些cDNA来源于慢抽搐肌肌浆网ca - atp酶基因的选择性剪接转录本。其中一种从胃库中分离出来的dna编码一种钙三磷酸腺苷酶,与骨骼肌酶相同。在大脑、肾脏和胃文库中发现的第二类cDNA,在其大部分长度上与慢收缩异构体相同,但编码另一个C端,具有不同的3'-未翻译序列。肌肉异构体由997个氨基酸组成,以Ala-Ile-Leu-Glu序列终止,而第二个异构体的长度为1043个氨基酸,这是由于最后4个氨基酸被一个包含潜在跨膜结构域的50个氨基酸序列所取代,然后是一个n链糖基化位点的一致序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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