Flück M, Booth F W, Waxham M N
Department of Integrative Biology and Pharmacology, University of Texas Medical School, Houston, Texas 77030, USA.
Biochem Biophys Res Commun. 2000 Apr 13;270(2):488-94. doi: 10.1006/bbrc.2000.2457.
We characterized the activity of Ca(2+)/calmodulin-dependent protein kinase II (CaMKII) in homogenates and nuclear extracts of skeletal muscle and analyzed their capacity to phosphorylate the myogenic factor SRF. Isoforms of CaMKII enriched from skeletal muscle phosphorylated SRF in vitro to high stoichiometries and produced multiple forms on SDS-PAGE, suggesting that SRF was phosphorylated at multiple sites. Phosphopeptide-mapping experiments using truncated SRF proteins located the residues of SRF phosphorylated by recombinant CaMKII within amino acids 1-171, with at least one site residing in amino acids 142-171. Microsequencing of these phosphorylated peptides identified that both Ser-103 and a novel residue, Thr-160 in the MADS box of SRF, were sites of phosphorylation. CaMKII activity was enriched in nuclear extracts relative to crude homogenates from skeletal muscle and similarly phosphorylated the nuclear transcription factor SRF in vitro. The location of Thr-160 in the 3-D structure of SRF suggests that its phosphorylation by nuclear CaMKII may directly influence DNA binding of SRF and other MADS box factors.
我们对骨骼肌匀浆和核提取物中钙调蛋白依赖性蛋白激酶II(CaMKII)的活性进行了表征,并分析了它们磷酸化生肌因子血清反应因子(SRF)的能力。从骨骼肌中富集的CaMKII同工型在体外将SRF磷酸化至高化学计量比,并在SDS-PAGE上产生多种形式,这表明SRF在多个位点被磷酸化。使用截短的SRF蛋白进行的磷酸肽图谱实验确定了重组CaMKII磷酸化SRF的残基位于氨基酸1-171内,至少有一个位点位于氨基酸142-171内。对这些磷酸化肽段的微测序鉴定出SRF的MADS盒中的Ser-103和一个新的残基Thr-160均为磷酸化位点。相对于骨骼肌的粗匀浆,CaMKII活性在核提取物中富集,并且在体外同样能磷酸化核转录因子SRF。Thr-160在SRF三维结构中的位置表明,其被核CaMKII磷酸化可能直接影响SRF和其他MADS盒因子的DNA结合。