Effects of cyclic nucleotides and calcium/calmodulin on protein phosphorylation in the CNS of Hirudo medicinalis
Neuroscience published in J Neurochem (1989)
Abstract
Protein phosphorylation plays an important role in the regulation of neural functions. We have studied the phosphorylation of proteins in homogenates of segmental ganglia of the leech Hirudo medicinalis. We describe a number of proteins whose phosphorylation is dependent on calcium/calmodulin or cyclic nucleotides. Most of the proteins whose phosphorylation is increased in the presence of calcium seem to be substrates for cyclic nucleotide-dependent protein kinases. Only two of the phosphoproteins described appear to be specific substrates for calcium/calmodulin protein kinase(s), and at least six phosphoproteins appear to be specific substrates for cyclic nucleotide-dependent kinase(s). The leech nervous system, with large and identifiable neurons, provides a good tool for studies of neural functions, such as learning. The results are discussed in the context of the role of protein phosphorylation on learning processes.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
Identification of cyclic-nucleotide- and calcium/calmodulin-dependent phosphoproteins in Hirudo medicinalis segmental ganglia, using the leech CNS's identifiable large neurons as a model for studying signaling and learning.
Why This Matters for Hirudotherapy
This study characterized protein phosphorylation in homogenates of segmental ganglia of Hirudo medicinalis, identifying substrates regulated by calcium/calmodulin and cyclic nucleotides. Most calcium-dependent phosphoproteins also appeared to be substrates for cyclic nucleotide-dependent kinases, while only two were specific to calcium/calmodulin kinase(s) and at least six were specific to cyclic nucleotide-dependent kinase(s). The authors note that the leech nervous system, with large and identifiable neurons, provides a useful tool for studying neural functions such as learning, and discuss the results in that context. This is basic neurochemical research on the leech nervous system with no stated connection to hirudotherapy or the leech secretome; its relevance to ASH's domain is limited to foundational knowledge of Hirudo medicinalis biochemistry.
Citation
Effects of cyclic nucleotides and calcium/calmodulin on protein phosphorylation in the CNS of Hirudo medicinalis.
Garcia-Gil M et al. · Journal of neurochemistry, 1989
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