McGill C J, Brooks G
Cellular and Molecular Biology Laboratory, Rayne Institute, St. Thomas' Hospital, London, UK.
Cardiovasc Res. 1997 May;34(2):368-76. doi: 10.1016/s0008-6363(97)00041-2.
Protein kinase C (PKC) plays a pivotal role in modulating the growth and differentiation of many cell types including the cardiac myocyte. However, little is known about molecules that act immediately downstream of PKC in the heart. In this study we have investigated the expression of 80K/MARCKS, a major PKC substrate, in whole ventricles and in cardiac myocytes from developing rat hearts.
Poly A/ RNA was prepared from neonatal (2-day) and adult (42-day) cardiac myocytes and whole ventricular tissue and mRNA expression determined by reverse transcription-polymerase chain reaction (RT-PCR) using primers designed to identify a 420 bp fragment in the 80K/MARCKS gene. Protein extracts were prepared from either 2-day and 42 day cardiac myocytes or from whole ventricular tissue at 2, 5-11, 14, 17, 21, 28 and 42 days of age. Protein expression was determined by immunoblotting with an 80/MARCKS antipeptide antibody and PKC activity was determined by measuring the amount of gamma 32 P-ATP transferred to a specific peptide substrate.
RT-PCR analysis of 80K/MARCKS mRNA in neonatal (2-day) and adult (42-day) cardiac myocytes showed the expression of this gene in both cell types. Immunoblotting revealed maximum 80K/MARCKS protein expression in whole ventricular tissue at 5 days (a 75% increase above values at 2 days), followed by a transient decrease in expression during the 6-8 day period (61% of the protein expressed at 2 days for 8-day tissue) with levels returning to 5 day levels by 11 days of age. 80K/MARCKS protein was present in cardiac myocytes at 2 days of age whereas it was not detectable in adult cells. In addition, PKC activity levels increased to 160% of levels present at 2 days in 8-day old ventricles with PKC activity levels returning to 5-day levels by 9 days of age. This was then; followed by a steady decline in both 80K/MARCKS protein expression and PKC activity through to adulthood.
Expression of the PKC substrate, 80K/MARCKS, in cardiac myocytes changes significantly during development and the transient loss of immunoreactive protein during the 6-8 day development period may reflect 80K/MARCKS phosphorylation and subsequent down-regulation as a result of the concomitant up-regulation of PKC activity at this time.
蛋白激酶C(PKC)在调节包括心肌细胞在内的多种细胞类型的生长和分化中起关键作用。然而,对于心脏中在PKC下游直接起作用的分子了解甚少。在本研究中,我们调查了主要PKC底物80K/MARCKS在发育中的大鼠心脏全心室和心肌细胞中的表达。
从新生(2日龄)和成年(42日龄)心肌细胞及全心室组织中制备多聚A / RNA,使用设计用于鉴定80K/MARCKS基因中420 bp片段的引物,通过逆转录 - 聚合酶链反应(RT-PCR)测定mRNA表达。从2日龄和42日龄的心肌细胞或2、5 - 11、14、17、21、28和42日龄的全心室组织中制备蛋白质提取物。用80/MARCKS抗肽抗体通过免疫印迹法测定蛋白质表达,通过测量转移到特定肽底物上的γ32P - ATP量来测定PKC活性。
对新生(2日龄)和成年(42日龄)心肌细胞中80K/MARCKS mRNA的RT-PCR分析表明,该基因在两种细胞类型中均有表达。免疫印迹显示全心室组织中80K/MARCKS蛋白表达在5天时最高(比2天时的值增加75%),随后在6 - 8天期间表达短暂下降(8日龄组织中表达的蛋白为2日龄时的61%),到11日龄时水平恢复到5天的水平。80K/MARCKS蛋白在2日龄的心肌细胞中存在,而在成年细胞中未检测到。此外,8日龄心室中的PKC活性水平增加到2日龄时水平的160%,到9日龄时PKC活性水平恢复到5天的水平。随后,直至成年,80K/MARCKS蛋白表达和PKC活性均稳步下降。
PKC底物80K/MARCKS在心肌细胞中的表达在发育过程中发生显著变化,在6 - 8天的发育期间免疫反应性蛋白的短暂缺失可能反映了80K/MARCKS的磷酸化以及随后由于此时PKC活性的伴随上调而导致的下调。