Misquitta Christine M, Ghosh Paromita, Mwanjewe James, Grover Ashok K
Department of Biology, HSC 4N41 McMaster University, 1200 Main Street West, Hamilton, Ontario, L8N 3Z5, Canada.
Biochem J. 2005 May 15;388(Pt 1):291-7. doi: 10.1042/BJ20041568.
Alternative splicing at position 3495 b yields SERCA2 (sarco/endoplasmic reticulum Ca2+ pump 2) RNA species, namely SERCA2a and SERCA2b which differ in 3'-end regions. This results in SERCA2b RNA being less stable. In vitro decay experiments show that, in the presence of protein extracts from nuclei of LVMs (left ventricular myocytes), the rate of decay of both SERCA2b RNA and synthetic RNA from its 3'-region is greater than that of the corresponding SERCA2a RNA. To search for cis-acting instability elements in the 3'-region of SERCA2b, we examined the effects of LVM nuclear protein extracts on the in vitro decay of six short overlapping capped [m7G(5')ppp(5')Gm] and polyadenylated (A40) RNA fragments from the 3'-end region (3444-4472) of SERCA2b. The proximal fragment 2B1 (3444-3753) was the most unstable. 2B1 RNA without a cap or a polyadenylated tail was analysed further in electrophoretic mobility-shift assays, and was observed to bind to protein(s) in the nuclear extracts. Based on competition for binding to nuclear proteins between radiolabelled 2B1 RNA and short unlabelled RNA fragments, the cis-acting element involved in this binding was the sequence 2B1-4. 2B1-4 is a 35-base (3521-3555, CCAGUCCUGCUCGUUGUGGGCGUGCACCGAGGGGG) GC-rich region just past the splice site (3495). Nuclear extracts decreased the electrophoretic mobility of the radiolabelled 2B1-4 RNA which bound to two proteins (19 and 21 kDa) in cross-linking experiments. Excess 2B1-4 RNA decreased the decay of the 2B1 RNA by the nuclear protein extract. 2B1-del 4 RNA (2B1 with the 2B1-4 domain deleted) also decayed more slowly than the control 2B1 RNA. Thus SERCA2b contains a novel GC-rich cis-acting element involved in its decay by nuclear proteins.
3495位碱基处的可变剪接产生了肌浆网/内质网Ca2+泵2(SERCA2)的RNA种类,即SERCA2a和SERCA2b,它们在3'端区域存在差异。这导致SERCA2b RNA稳定性较差。体外降解实验表明,在左心室肌细胞核蛋白提取物存在的情况下,SERCA2b RNA及其3'区域合成RNA的降解速率均高于相应的SERCA2a RNA。为了寻找SERCA2b 3'区域中的顺式作用不稳定元件,我们检测了左心室肌细胞核蛋白提取物对SERCA2b 3'端区域(3444 - 4472)六个短的重叠的带帽[m7G(5')ppp(5')Gm]和聚腺苷酸化(A40)RNA片段体外降解的影响。近端片段2B1(3444 - 3753)最不稳定。对没有帽或聚腺苷酸化尾的2B1 RNA在电泳迁移率变动分析中进一步分析,观察到它能与核提取物中的蛋白质结合。基于放射性标记的2B1 RNA与短的未标记RNA片段对核蛋白结合的竞争,参与这种结合的顺式作用元件是序列2B1 - 4。2B1 - 4是一个富含GC的35个碱基(3521 - 3555,CCAGUCCUGCUCGUUGUGGGCGUGCACCGAGGGGG)区域,刚好位于剪接位点(3495)之后。在交联实验中,核提取物降低了与两种蛋白质(19 kDa和21 kDa)结合的放射性标记的2B1 - 4 RNA的电泳迁移率。过量的2B1 - 4 RNA降低了核蛋白提取物对2B1 RNA的降解。2B1 - del 4 RNA(缺失2B1 - 4结构域的2B1)的降解也比对照2B1 RNA更慢。因此,SERCA2b含有一个新的富含GC的顺式作用元件,参与其被核蛋白降解的过程。