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A conserved deamidation site at Asn 2 in the catalytic subunit of mammalian cAMP-dependent protein kinase detected by capillary LC-MS and tandem mass spectrometry.

机译:毛细管LC-MS和串联质谱检测到哺乳动物cAMP依赖性蛋白激酶催化亚基中Asn 2的保守脱酰胺位。

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摘要

The N-terminal sequence myr-Gly-Asn is conserved among the myristoylated cAPK (protein kinase A) catalytic subunit isozymes Calpha, Cbeta, and Cgamma. By capillary LC-MS and tandem MS, we show that, in approximately one third of the Calpha and Cbeta enzyme populations from cattle, pig, rabbit, and rat striated muscle, Asn 2 is deamidated to Asp 2. This deamidation accounts for the major isoelectric variants of the cAPK C-subunits formerly called CA and CB. Deamidation also includes characteristic isoaspartate isomeric peptides from Calpha and Cbeta. Asn 2 deamidation does not occur during C-subunit preparation and is absent in recombinant myristoylated Calpha (rCalpha) from Escherichia coli. Deamidation appears to be the exclusive pathway for introduction of an acidic residue adjacent to the myristoylated N-terminal glycine, verified by the myristoylation negative phenotype of an rCalpha(Asn 2 Asp) mutant. This is the first report thus far of a naturally occurring myr-Gly-Asp sequence. Asp 2 seems to be required for the well-characterized (auto)phosphorylation of the native enzyme at Ser 10. Our results suggest that the myristoylated N terminus of cAPK is a conserved site for deamidation in vivo. Comparable myr-Gly-Asn sequences are found in several signaling proteins. This may be especially significant in view of the recent knowledge that negative charges close to myristic acid in some proteins contribute to regulating their cellular localization.
机译:N末端序列myr-Gly-Asn在肉豆蔻酰化的cAPK(蛋白激酶A)催化亚基同工酶Calpha,Cbeta和Cgamma中是保守的。通过毛细管LC-MS和串联MS,我们显示,在牛,猪,兔和大鼠横纹肌的大约三分之一的Calpha和Cbeta酶种群中,Asn 2脱酰胺化为Asp2。这种脱酰胺化是主要的cAPK C亚基的等电变异体,以前称为CA和CB。脱酰胺作用还包括来自Calpha和Cbeta的特征性异天冬氨酸异构肽。 Asn 2脱酰胺作用在C亚基制备过程中不会发生,并且在大肠杆菌的重组肉豆蔻酰化Calpha(rCalpha)中不存在。脱酰胺作用似乎是引入与肉豆蔻酰化的N端甘氨酸相邻的酸性残基的唯一途径,这已通过rCalpha(Asn 2 Asp)突变体的肉豆蔻酰化负表型证实。这是迄今为止自然发生的myr-Gly-Asp序列的首次报道。 Asp 2似乎是Ser 10上天然酶的特征化(自体)磷酸化所必需的。我们的结果表明,cAPK的肉豆蔻酰化N末端是体内脱酰胺基的保守位点。在几种信号蛋白中发现了可比的myr-Gly-Asn序列。鉴于最近的认识,即某些蛋白质中接近肉豆蔻酸的负电荷有助于调节其细胞定位,这可能尤其重要。

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