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Secondary structure of heterogeneous nuclear RNA: Two classes of double-stranded RNA in native ribonucleoprotein

机译:异质核RNA的二级结构:天然核糖核蛋白中的两类双链RNA

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摘要

Heterogeneous nuclear RNA (hnRNA) from HeLa cells contains intramolecular duplexes. Since hnRNA is associated with protein in vivo, it is possible that the double-stranded regions observed in deproteinized hnRNA form spontaneously upon the release of protein from single-stranded but potentially complementary sequences. We show here that this is not the case for a class of double-stranded sequences that is defined by resistance to RNases A + T1 at high ionic strength. Exposure of HeLa hnRNA·ribonucleoprotein (hnRNP) particles to Escherichia coli RNase III, a double-strand-specific endoribonuclease, destroys most of the sequences resistant to RNases A + T1. This effect is completely blocked when hnRNP is exposed to RNase III in the presence of an excess of purified double-stranded RNA. In addition, we show that there exist two classes of double-stranded RNA in hnRNP at a salt concentration of 0.13 M. These are distinguished by their relative resistance to RNases A + T1. The more stable double-stranded sequences, which are resistant to RNases A + T1 at 0.13 M, comprise 1.0-1.1% of the nucleotides in hnRNP. The less stable double-stranded sequences comprise an additional 1.5-2.0% of the nucleotides in hnRNP. These are sensitive to RNase III at 0.13 M, but are not resistant to RNases A + T1 unless the salt concentration is raised to 0.63 M. The demonstration that double-stranded sequences resistant to RNases A + T1 exist in native ribonucleoprotein and are not artifacts of deproteinization now makes it appropriate to seriously consider their possible functional role in hnRNA metabolism, perhaps as binding sites for regulatory proteins involved in mRNA processing.
机译:来自HeLa细胞的异质核RNA(hnRNA)包含分子内双链体。由于hnRNA在体内与蛋白质相关,因此从单链但可能互补的序列中释放出蛋白质后,去蛋白hnRNA中观察到的双链区域可能会自发形成。我们在此表明​​,对于一类双链序列而言并非如此,该双链序列是由在高离子强度下对RNase A + T1的抗性所定义的。 HeLa hnRNA·核糖核酸蛋白(hnRNP)颗粒暴露于大肠杆菌RNase III(一种双链特异性内切核糖核酸酶)会破坏大多数对RNase A + T1产生抗性的序列。当在过量的纯化双链RNA存在下将hnRNP暴露于RNase III时,这种作用被完全阻断。另外,我们显示在hnRNP中存在两类盐浓度为0.13 M的双链RNA。它们的区别在于它们对RNase A + T1的相对抗性。在0.13 M时对RNase A + T1有抗性的更稳定的双链序列占hnRNP中核苷酸的1.0-1.1%。较不稳定的双链序列在hnRNP中包含另外1.5-2.0%的核苷酸。它们在0.13 M时对RNase III敏感,但除非盐浓度提高到0.63 M,否则它们对RNase A + T1不耐药。证明对RNase A + T1耐药的双链序列存在于天然核糖核酸蛋白中,而不是假象现在,脱蛋白的研究使人们有必要认真考虑它们在hnRNA代谢中的可能功能,也许作为参与mRNA加工的调节蛋白的结合位点。

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