Pollack J R, Ganem D
Department of Biochemistry and Biophysics, University of California Medical Center, San Francisco 94143-0502.
J Virol. 1993 Jun;67(6):3254-63. doi: 10.1128/JVI.67.6.3254-3263.1993.
Selective encapsidation of hepatitis B virus (HBV) genomic RNA within cytoplasmic core particles requires recognition of the cis-encapsidation signal, (termed epsilon) located at the 5' end of genomic RNA. By transfecting plasmids expressing chimeric RNAs bearing HBV sequences fused to lacZ, we have mapped the minimal region of epsilon to the 5' 94 nucleotides (nt) of genomic RNA. Enzymatic probing of the RNA secondary structure in this region (by using either in vitro transcripts or RNA extracted from HBV core particles) reveals a stem-loop structure containing a lower stem, a 6-nt bulge, an upper stem with a single unpaired U residue, and a 6-nt loop. The functional role of this structure in encapsidation was explored by examining the effects of mutations in epsilon on encapsidation of RNA in vivo. These studies reveal that (i) in the lower stem, base pairing but not specific primary sequence is required for function; (ii) there is no requirement for base pairing in the lower portion of the upper stem, but base pairing elsewhere in this stem contributes to packaging efficiency; (iii) the presence of the 6-nt bulge, but not its primary sequence, is important for function; and (iv) specific nucleotide sequences in the loop and in regions of the upper stem are critical for RNA encapsidation.
乙型肝炎病毒(HBV)基因组RNA在细胞质核心颗粒内的选择性包装需要识别位于基因组RNA 5'端的顺式包装信号(称为ε)。通过转染表达与lacZ融合的携带HBV序列的嵌合RNA的质粒,我们已将ε的最小区域定位到基因组RNA的5' 94个核苷酸(nt)。对该区域RNA二级结构的酶促探测(通过使用体外转录本或从HBV核心颗粒中提取的RNA)揭示了一种茎环结构,其包含一个下部茎、一个6 nt的凸起、一个带有单个未配对U残基的上部茎和一个6 nt的环。通过检查ε中的突变对体内RNA包装的影响,探索了该结构在包装中的功能作用。这些研究表明:(i)在下部茎中,功能需要碱基配对而非特定的一级序列;(ii)上部茎的下部不需要碱基配对,但该茎中其他位置的碱基配对有助于包装效率;(iii)6 nt凸起的存在而非其一级序列对功能很重要;(iv)环中和上部茎区域中的特定核苷酸序列对RNA包装至关重要。