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Uncoupling store-operated Ca2+ entry and altered Ca2+ release from sarcoplasmic reticulum through silencing of junctophilin genes

  • Yutaka Hirata
  • , Marco Brotto
  • , Noah Weisleder
  • , Yi Chu
  • , Peihui Lin
  • , Xiaoli Zhao
  • , Angela Thornton
  • , Shinji Komazaki
  • , Hiroshi Takeshima
  • , Jianjie Ma
  • , Zui Pan

Research output: Contribution to journalArticlepeer-review

86 Scopus citations

Abstract

Junctophilin (JP) mediates the close contact between cell surface and intracellular membranes in muscle cells ensuring efficient excitation- contraction coupling. Here we demonstrate that disruption of triad junction structure formed by the transverse tubular (TT) invagination of plasma membrane and terminal cisternae of sarcoplasmic reticulum (SR) by reduction of JP expression leads to defective Ca2+ homeostasis in muscle cells. Using adenovirus with small hairpin interference RNA (shRNA) against both JP1 and JP2 genes, we could achieve acute suppression of JPs in skeletal muscle fibers. The shRNA-treated muscles exhibit deformed triad junctions and reduced store-operated Ca2+ entry (SOCE), which is likely due to uncoupled retrograde signaling from SR to TT. Knockdown of JP also causes a reduction in SR Ca2+ storage and altered caffeine-induced Ca2+ release, suggesting an orthograde regulation of the TT membrane on the SR Ca 2+ release machinery. Our data demonstrate that JPs play an important role in controlling overall intracellular Ca2+ homeostasis in muscle cells. We speculate that altered expression of JPs may underlie some of the phenotypic changes associated with certain muscle diseases and aging.

Original languageEnglish
Pages (from-to)4418-4427
Number of pages10
JournalBiophysical Journal
Volume90
Issue number12
DOIs
StatePublished - Jun 2006

Funding

This work was supported by a UMDNJ foundation grant to Z.P., National Institutes of Health grants (RO1-AG15556, RO1-HL69000, RO1-CA95739, and RO1-DK51770) to J.M., an American Heart Association scientist development grant and a National Institutes of Aging faculty development grant to M.B., and an American Heart Association postdoctoral fellowship to N.W.

FundersFunder number
National Institutes of Aging
UMDNJ foundation
National Institutes of Health (NIH)RO1-AG15556, RO1-DK51770, RO1-HL69000
National Childhood Cancer Registry – National Cancer InstituteR01CA095739
American the American Heart Association

    ASJC Scopus subject areas

    • Biophysics

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