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Styren, S. D., Civin, W. H. & Rogers, J. Molecular, cellular, and pathologic characterization of HLA-DR immunoreactivity in normal elderly and Alzheimer's disease brain.
The ability of TG2 to regulate most of these various cellular and pathologic functions has been linked to its role in TGF-β expression and bioactivation in fibroblasts, breast and ovarian cancer cells, and renal epithelial cells [ 22, 50, 53- 55].
For this reason, and because of the ease of use and reproducibility that can be achieved, these imagable models provide ideal systems for determining anti-metastatic effects of cancer drugs and therapeutic regimens and is well suited for investigating the molecular, cellular and pathologic basis for metastasis to specific organs and tissues.
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Protein tyrosine phosphatases (PTPs) play a fundamental role in regulating diverse proteins that essentially participate in every aspect of cellular physiologic and pathologic processes (Zeng et al, 1998).
RAF kinases are serine/threonine kinases whose activity is modulated by growth factors and that play a central role in normal and pathologic cellular processes, including development, cell regeneration, cell senescence and cancer [16].
The TGF-β family has been extensively studied and is known to be involved in a variety of cellular functions, both physiologic and pathologic [ 28].
Subsequent biochemical and genetic studies provided evidence for the activity of MLL1 in a wide range of physiologic and pathologic cellular processes, including cell proliferation and differentiation, through the regulation of Hox and non- Hox gene expression [102]– [104].
The importance of DNA methylation in normal and pathologic cellular processes has stimulated a growing interest in how DNA methylation suppresses gene expression, and in examining how changes in methylation patterns affect gene expression.
It is not a surprise that also P-TEFb is an miRNAs target and that several miRNAs are involved in the regulation of P-TEFb availability in different physiologic and pathologic cellular models.
TCTP is a multifaceted protein which has been implicated in a number of key cellular processes, both physiologic and pathologic, such as development, immune response, cell cycle, cell proliferation and growth, cell division, cytoskeleton activity, protein synthesis, and calcium binding [ 28, 29].
Gene expression modulates cellular functions in both physiologic and pathologic conditions.
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