Abstract

We isolated cDNAs encoding type 2 and type 3 inositol 1,4,5-trisphosphate (IP(3)) receptors (IP(3)R2 and IP(3)R3, respectively) from mouse lung and found a novel alternative splicing segment, SI(m2), at 176-208 of IP(3)R2. The long form (IP(3)R2 SI(m2)(+)) was dominant, but the short form (IP(3)R2 SI(m2)(-)) was detected in all tissues examined. IP(3)R2 SI(m2)(-) has neither IP(3) binding activity nor Ca(2+) releasing activity. In addition to its reticular distribution, IP(3)R2 SI(m2)(+) is present in the form of clusters in the endoplasmic reticulum of resting COS-7 cells, and after ATP or Ca(2+) ionophore stimulation, most of the IP(3)R2 SI(m2)(+) is in clusters. IP(3)R3 is localized uniformly on the endoplasmic reticulum of resting cells and forms clusters after ATP or Ca(2+) ionophore stimulation. IP(3)R2 SI(m2)(-) does not form clusters in either resting or stimulated cells. IP(3) binding-deficient site-directed mutants of IP(3)R2 SI(m2)(+) and IP(3)R3 fail to form clusters, indicating that IP(3) binding is involved in the cluster formation by these isoforms. Coexpression of IP(3)R2 SI(m2)(-) prevents stimulus-induced IP(3)R clustering, suggesting that IP(3)R2 SI(m2)(-) functions as a negative coordinator of stimulus-induced IP(3)R clustering. Expression of IP(3)R2 SI(m2)(-) in CHO-K1 cells significantly reduced ATP-induced Ca(2+) entry, but not Ca(2+) release, suggesting that the novel splice variant of IP(3)R2 specifically influences the dynamics of the sustained phase of Ca(2+) signals.

Highlights

  • We isolated cDNAs encoding type 2 and type 3 inositol 1,4,5-trisphosphate (IP3) receptors (IP3R2 and IP3R3, respectively) from mouse lung and found a novel alternative splicing segment, SIm2, at 176 –208 of IP3R2

  • We found that amino acid residues 176 –208 of mouse IP3R2 constitute an alternative splicing segment

  • This segment, designated SIm2, is highly conserved in both mouse IP3R1 (75.8% identity) and mouse IP3R3 (81.8% identity) (Fig. 2A), suggesting that it is essential for the fundamental functions of IP3 receptor (IP3R)

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Summary

EXPERIMENTAL PROCEDURES

Molecular Cloning of Mouse IP3R2 and IP3R3 cDNAs—Total RNA was isolated from the lungs of C57BL/6J mice by a guanidinium/acid phenol method [40]. First strand cDNA was obtained from 2 ␮g of mouse lung total RNA with reverse transcriptase (Superscript II, Invitrogen) and a random hexamer.

Nucleotide sequence
TABLE II
Findings
DISCUSSION
Full Text
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