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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Atp2b2, encoding plasma membrane Ca(2+)-ATPase type 2, (PMCA2) exhibits tissue-specific first exon usage in hair cells, neurons, and mammary glands of mice.
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Atp2b2, encoding plasma membrane Ca(2+)-ATPase type 2, (PMCA2) exhibits tissue-specific first exon usage in hair cells, neurons, and mammary glands of mice.

机译:Atp2b2,编码质膜Ca(2 +)-ATPase 2型(PMCA2),在小鼠的毛细胞,神经元和乳腺中显示出组织特异性的第一外显子用法。

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摘要

Atp2b2 encodes the plasma membrane Ca(2+)-ATPase type 2 (PMCA2) expressed in various tissues, including stereocilia of cochlear and vestibular hair cells, cerebellar Purkinje cells, and lactating mammary epithelia. Mutations of the gene lead to deafness, ataxia, and reduced Ca(2+) levels in milk. Heterozygous mutants also have abnormal hearing, suggesting that precise regulation of Atp2b2 is required for normal function. In this study, we describe Atp2b2 5'-untranslated region genomic structure and transcript usage in mice. Using 5'-rapid amplification of cDNA ends, we observed four transcripts: types alpha, beta, mu and delta, each splicing into a common ATG-containing exon. Types alpha and beta correspond to previously published mammalian cDNA sequences. Types mu and delta constitute novel 5'-untranslated region sequences, and were observed at high levels only in lactating mammary gland. Using real-time reverse transcriptase polymerase chain reaction, we quantified relative transcript usage across several tissues. We show that alpha and beta are abundant throughout the CNS, as well as the cochlea. When we microdissected the cochlea into hair cell and spiral ganglion containing fractions, we found that cochlear hair cell expression is mediated through the type alpha transcript. In situ hybridization studies in cerebellum using exon-specific probes revealed that alpha dominates in Purkinje neurons, while beta is enriched in cerebellar granule neurons. We compared 5'-untranslated region sequence across multiple species, and found high conservation around the first exons for alpha and beta in mammals, but not other species. The regions around the mu and delta first exons are highly conserved between rat and mouse, but less so with other species. Our results show that expression of Atp2b2 is highly regulated, using four different transcriptional start regions, two of which are differentially expressed in neuronal tissue. This suggests that unique regulatory mechanisms are used to control Atp2b2 expression in different types of cells.
机译:Atp2b2编码质膜Ca(2 +)-ATPase 2型(PMCA2)在各种组织中表达,包括耳蜗和前庭毛细胞的立体纤毛,小脑浦肯野细胞和泌乳的乳腺上皮细胞。该基因的突变导致耳聋,共济失调,并降低牛奶中的Ca(2+)水平。杂合突变体也有异常的听力,这表明对Atp2b2的精确调节是正常功能所必需的。在这项研究中,我们描述了Atp2b2 5'-非翻译区基因组结构和转录本在小鼠中的使用。使用cDNA末端的5'快速扩增,我们观察到了四个转录物:α,β,mu和delta类型,每个转录物都剪接到一个包含ATG的常见外显子上。类型alpha和beta对应于先前发表的哺乳动物cDNA序列。 mu和delta类型构成了新的5'-非翻译区序列,仅在哺乳期的乳腺中高水平观察到。使用实时逆转录酶聚合酶链反应,我们量化了跨多个组织的相对转录用法。我们表明,整个中枢神经系统以及耳蜗中都富含α和β。当我们将耳蜗显微切割成毛细胞和含有螺旋神经节的部分时,我们发现耳蜗毛细胞表达是通过α型转录物介导的。使用外显子特异性探针在小脑中进行的原位杂交研究表明,α在Purkinje神经元中占主导地位,而β在小脑颗粒神经元中富集。我们比较了跨多个物种的5'-非翻译区序列,发现哺乳动物的alpha和beta的第一个外显子周围具有高度保守性,而其他物种则没有。 mu和delta第一外显子周围的区域在大鼠和小鼠之间高度保守,而在其他物种中则较少。我们的结果表明,Atp2b2的表达受到高度调节,使用了四个不同的转录起始区域,其中两个在神经元组织中差异表达。这表明独特的调节机制可用于控制Atp2b2在不同类型的细胞中的表达。

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