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1.
J Biol Chem ; 282(49): 36102-11, 2007 Dec 07.
Article in English | MEDLINE | ID: mdl-17928293

ABSTRACT

Calcium levels in the presynaptic nerve terminal are altered by several pathways, including voltage-gated Ca(2+) channels, the Na(+)/Ca(2+) exchanger, Ca(2+)-ATPase, and the mitochondria. The influx pathway for homeostatic control of [Ca(2+)](i) in the nerve terminal has been unclear. One approach to detecting the pathway that maintains internal Ca(2+) is to test for activation of Ca(2+) influx following Ca(2+) depletion. Here, we demonstrate that a constitutive influx pathway for Ca(2+) exists in presynaptic terminals to maintain internal Ca(2+) independent of voltage-gated Ca(2+) channels and Na(+)/Ca(2+) exchange, as measured in intact isolated nerve endings from mouse cortex and in intact varicosities in a neuronal cell line using fluorescence spectroscopy and confocal imaging. The Mg(2+) and lanthanide sensitivity of the influx pathway, in addition to its pharmacological and short hairpin RNA sensitivity, and the results of immunostaining for transient receptor potential (TRP) channels indicate the involvement of TRPC channels, possibly TRPC5 and TRPC1. This constitutive Ca(2+) influx pathway likely serves to maintain synaptic function under widely varying levels of synaptic activity.


Subject(s)
Adenosine Triphosphatases/metabolism , Calcium Channels/metabolism , Homeostasis/physiology , Presynaptic Terminals/metabolism , TRPC Cation Channels/metabolism , Animals , Calcium/metabolism , Cell Line , Cerebral Cortex/cytology , Cerebral Cortex/metabolism , Magnesium/metabolism , Mice , Mitochondria/metabolism
2.
Differentiation ; 72(8): 434-49, 2004 Oct.
Article in English | MEDLINE | ID: mdl-15606502

ABSTRACT

The four isoforms of desmosomal cadherin desmogleins (Dsg1-4) are expressed in epithelial tissues in a differentiation-specific manner. Extensive sequencing of the human genome has revealed only one copy of the Dsg1 gene. However, we recently cloned two novel additional mouse Dsg1 genes, Dsg1-beta and -gamma, which flank the original Dsg1-alpha on chromosome 18. Sequence conservation between the Dsg1 isoforms diverged significantly at exon 11, particularly in the region that encodes for the extracellular anchoring (EA) domains. Computational analysis revealed very low hydrophilic potential of the Dsg1-gamma EA compared with the corresponding sequences of Dsg1-alpha and -beta, suggesting that the Dsg1-gamma EA domain may have a stronger affinity to the cell membrane. We generated antibodies using synthetic peptides or recombinant proteins localized within the EA domains. These antibodies were tested for their specificity and were then used to demonstrate expression of Dsg1 isoforms in various tissues. In the epidermis, all Dsg1 isoforms were differentially expressed in the differentiating cell layers. In the hair follicle, all Dsg1 isoforms were present throughout the entire process of its development and cycling but the expression of Dsg1 isoforms is subject to significant hair cycle-dependent changes. Dsg1-beta and -gamma, but not Dsg1-alpha, were detected in the sebaceous gland epithelium and the stratified epithelium of the stomach. Finally, Dsg1-alpha and Dsg1-beta, but not Dsg1-gamma, are proteolytically cleaved by exfoliative toxin A. These results suggest that the developmental complexity of mouse tissues, including skin and hair, may play a significant role in the evolutionary driving force to maintain multiple Dsg1 genes in mouse.


Subject(s)
Cadherins/chemistry , Cadherins/metabolism , Epithelium/metabolism , Amino Acid Sequence , Animals , Base Sequence , Cadherins/physiology , Calcium/pharmacology , Desmoglein 1 , Desmosomes/metabolism , Embryonic Development/physiology , Epithelium/chemistry , Exfoliatins/chemistry , Exons/genetics , Hair Follicle/immunology , Hair Follicle/metabolism , Keratinocytes/drug effects , Keratinocytes/immunology , Keratinocytes/metabolism , Mice , Molecular Sequence Data , Protein Isoforms/analysis , Protein Isoforms/chemistry , Protein Isoforms/metabolism , Protein Structure, Tertiary , Sebaceous Glands/cytology , Sebaceous Glands/metabolism , Tissue Distribution/immunology , Up-Regulation
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