mAKAP and the ryanodine receptor are part of a multi-component signaling complex on the cardiomyocyte nuclear envelope
Author:
Kapiloff Michael S.1, Jackson Nicole1, Airhart Nathan1
Affiliation:
1. Department of Pediatrics, Heart Research Center, Oregon Health Sciences University, NRC5, 3181 S.W. Sam Jackson Park Road, Portland, OR 97201, USA
Abstract
The physical association of regulatory enzymes and ion channels at relevant intracellular sites contributes to the diversity and specificity of second messenger-mediated signal transduction in cells. mAKAP is a scaffolding protein that targets the cAMP-dependent protein kinase A and phosphodiesterase type 4D3 to the nuclear envelope of differentiated cardiac myocytes. Here we present data that the mAKAP signaling complex also includes nuclear envelope-resident ryanodine receptors and protein phosphatase 2A. The ryanodine receptor is the major cardiac ion channel responsible for calcium-induced calcium release from intracellular calcium ion stores. As demonstrated by a combination of immunohistochemistry and tissue fractionation, mAKAP is targeted specifically to the nuclear envelope, whereas the ryanodine receptor is present at both the sarcoplasmic reticulum and nuclear envelope intracellular membrane compartments. At the nuclear envelope, a subset of cardiac ryanodine receptor is bound to mAKAP and via the association with mAKAP may be regulated by protein kinase A-mediated phosphorylation. By binding protein kinase A and ryanodine receptor, mAKAP may serve as the scaffold for a cAMP- and calcium ion-sensitive signaling complex.
Publisher
The Company of Biologists
Reference56 articles.
1. Abrenica, B. and Gilchrist, J. S. (2000). Nucleoplasmic Ca2+ loading is regulated by mobilization of perinuclear Ca2+. Cell Calcium28, 127-136. 2. Adebanjo, O. A., Anandatheerthavarada, H. K., Koval, A. P., Moonga, B. S., Biswas, G., Sun, L., Sodam, B. R., Bevis, P. J., Huang, C. L., Epstein, S. et al. (
1999). A new function for CD38/ADP-ribosyl cyclase in nuclear Ca2+ homeostasis. Nat. Cell Biol.1, 409-414. 3. Adebanjo, O. A., Biswas, G., Moonga, B. S., Anandatheerthavarada, H. K., Sun, L., Bevis, P. J., Sodam, B. R., Lai, F. A., Avadhani, N. G. and Zaidi, M. (2000). Novel biochemical and functional insights into nuclear Ca2+ transport through IP3Rs and RyRs in osteoblasts. Am. J. Physiol. Renal Physiol.278, F784-F791. 4. Badminton, M. N., Campbell, A. K. and Rembold, C. M. (1996). Differential regulation of nuclear and cytosolic Ca2+ in HeLa cells. J. Biol. Chem.271, 31210-31214. 5. Bootman, M. D., Thomas, D., Tovey, S. C., Berridge, M. J. and Lipp, P. (2000). Nuclear calcium signalling. Cell. Mol. Life Sci.57, 371-378.
Cited by
93 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|