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Identification of novel human tumor cell-specific CaMK-II variants
1Massey Cancer Center, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0037, USA.
Abstract:
CaMK-II (the (type II) multifunctional Ca2+/CaM-dependent protein kinase) has been implicated in diverse neuronal and non-neuronal functions, including cell growth control. CaMKII expression was evaluated in a variety of human tumor cell lines using RT-PCR (reverse transcriptase coupled polymerase chain reaction). PCR primers which flanked the CaMK-II variable domain were used so that all possible variants of the four mammalian CaMK-II genes (alpha, beta, gamma and delta) could be identified. 8 distinct CaMK-II isozymes were identified from human mammary tumor and neuroblastoma cell cDNA, each of which represented a variant of beta, gamma or delta CaMK-II. They included 2 beta isozymes (beta e, beta 'e), 4 gamma isozymes (gamma B, gamma C, gamma G, gamma H) and 2 delta isozymes (delta C, delta E) This is the first report of human beta and delta CaMK-II sequences. A panel of human cell types was then screened for these CaMK-II isozymes. As expected, cerebral cortex predominately expressed alpha, beta and delta A CaMK-II. In contrast, tumor cells, including those of neuronal origin, expressed an entirely different spectrum of CaMK-II isozymes than adult neuronal tissue. Tumor cells of diverse tissue origin uniformly lacked alpha CaMK-II and expressed 1-2 beta isozymes, at least 3 gamma isozymes and 1-2 delta isozymes. When compared to undifferentiated fibroblasts, beta e, beta'e, gamma G and gamma H were preferentially expressed in tumor cells. CaMK-II immunoblots also indicated that neuroblastoma and mammary tumor cells express isozymes of CaMK-II not present in their non-transformed cell or tissue counterpart. The identification of these new, potential tumor-specific CaMK-II variants supports previous indications that CaMK-II plays a role in growth control. In addition, these results provide insight into both splice variant switching and variable domain structural similarities among all CaMK-II isozymes.
Insights
Calcium-calmodulin-dependent protein kinase II (CaMK-II) isozymes were identified in human tumor cells. Tumor cells express distinct CaMK-II variants, suggesting a role in cell growth control.
Area of Science:
- Molecular Biology
- Biochemistry
- Cell Biology
Background:
- Calcium-calmodulin-dependent protein kinase II (CaMK-II) is a multifunctional kinase involved in neuronal and non-neuronal functions, including cell growth.
- CaMK-II exists in multiple mammalian gene forms (alpha, beta, gamma, delta) and splice variants.
Purpose of the Study:
- To investigate the expression of CaMK-II isozymes in human tumor cell lines.
- To identify novel CaMK-II variants and compare their expression patterns in tumor cells versus normal tissues.
Main Methods:
- Reverse transcriptase coupled polymerase chain reaction (RT-PCR) was used to detect CaMK-II gene expression.
- PCR primers were designed to identify all possible variants of the four mammalian CaMK-II genes.
- CaMK-II immunoblots were performed to confirm protein expression.
Main Results:
- Eight distinct CaMK-II isozymes (variants of beta, gamma, and delta) were identified in human mammary tumor and neuroblastoma cell cDNA.
- Human tumor cells uniformly lacked alpha CaMK-II but expressed specific beta, gamma, and delta isozymes.
- Certain isozymes (beta e, beta'e, gamma G, gamma H) were preferentially expressed in tumor cells compared to fibroblasts.
Conclusions:
- This study reports the first human beta and delta CaMK-II sequences.
- Tumor cells express a unique spectrum of CaMK-II isozymes compared to normal neuronal tissue.
- The identified tumor-associated CaMK-II variants support the role of CaMK-II in cell growth control and offer insights into splice variant switching.