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Heat shock mediated modulation of protein kinase CK2 in the nuclear matrix
Alan T Davis1, Huamin Wang, Ping Zhang
1Minneapolis Veterans Affairs Medical Center, Department of Laboratory Medicine and Pathology and University of Minnesota Cancer Center, University of Minnesota, Minneapolis, Minnesota 55417, USA.
Abstract:
Nuclear matrix, a key structure in the nuclear framework, appears to be a particularly responsive target during heat shock treatment of cells. We have previously shown that nuclear matrix is a preferential target for protein kinase CK2 signaling in the nucleus. The levels of CK2 in the nuclear matrix undergo dynamic changes in response to altered growth status in the cell. Here, we have demonstrated that CK2 targeting to the nuclear matrix is profoundly influenced by treatment of the cells to temperatures higher than 37 degrees C. Rapid increase in the nuclear matrix association of CK2 is observed when cells are placed at temperatures of 41 and 45 degrees C. This effect at 45 degrees C was higher than at 41 degrees C, and was time-dependent. Also, different cell lines behaved in a qualitatively similar manner though the quantitative responses differed. The modulations in the nuclear matrix associated CK2 in response to heat shock appear to be due to trafficking of the enzyme between cytosolic and nuclear compartments. In addition, it was noted that isolated nuclei subjected to heat shock also responded by a shuttling of the intrinsic CK2 to the nuclear matrix compartment. These results suggest that modulations in CK2 in the nuclear compartment in response to the heat stress occur not only by a translocation of the enzyme from the cytoplasmic compartment to the nuclear compartment, but also that there is a redistribution of the kinase within the nuclear compartment resulting in a preferential association with the nuclear matrix. The results support the notion that CK2 association with the nuclear matrix in response to heat shock may serve a protective role in the cell response to stress.
Insights
Heat shock increases nuclear matrix association of protein kinase CK2 (casein kinase 2). This enzyme redistribution within the nucleus may protect cells during heat stress.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The nuclear matrix is a dynamic structural component of the cell nucleus.
- Protein kinase CK2 (casein kinase 2) plays a role in nuclear signaling.
- Previous studies indicated CK2 levels in the nuclear matrix change with cell growth.
Purpose of the Study:
- To investigate the effect of heat shock on CK2 targeting to the nuclear matrix.
- To understand the cellular mechanisms behind CK2 redistribution under thermal stress.
Main Methods:
- Exposing different cell lines to elevated temperatures (41°C and 45°C).
- Analyzing the association of CK2 with the nuclear matrix using biochemical methods.
- Observing CK2 localization in isolated nuclei subjected to heat shock.
Main Results:
- Heat shock significantly increased CK2 association with the nuclear matrix in a temperature- and time-dependent manner.
- CK2 redistribution involved trafficking between cytoplasmic and nuclear compartments.
- Isolated nuclei also showed CK2 shuttling to the nuclear matrix upon heat shock.
Conclusions:
- Heat stress induces CK2 translocation to the nuclear matrix, involving both cytoplasmic-nuclear movement and intranuclear redistribution.
- Nuclear matrix association of CK2 during heat shock may play a protective role in cellular stress response.