Department of Pharmacology, University of Cambridge, Cambridge, UK.
Br J Pharmacol. 2012 Feb;165(4):978-93. doi: 10.1111/j.1476-5381.2011.01624.x.
Splice variants of P2X7 receptor transcripts contribute to the diversity of receptor-mediated responses. Here, we investigated expression and function of C-terminal truncated (ΔC) variants of the mP2X7 receptor, which are predicted to escape inactivation in one strain of P2X7(-/-) mice (Pfizer KO).
Expression in wild-type (WT) and Pfizer KO tissue was investigated by reverse transcription (RT)-PCR and Western blot analysis. ΔC variants were also cloned and expressed in HEK293 cells to investigate their assembly, trafficking and function.
RT-PCR indicates expression of a ΔC splice variant in brain, salivary gland (SG) and spleen from WT and Pfizer KO mice. An additional ΔC hybrid transcript, containing sequences of P2X7 upstream of exon 12, part of exon 13 followed in-frame by the sequence of the vector used to disrupt the P2X7 gene, was also identified in the KO mice. By blue native (BN) PAGE analysis and the use of cross linking reagents followed by SDS-PAGE, P2X7 trimers, dimers and monomers were detected in the spleen and SG of Pfizer KO mice. The molecular mass was reduced compared with P2X7 in WT mice tissue, consistent with a ΔC variant. When expressed in HEK293 cells the ΔC variants were inefficiently trafficked to the cell surface and agonist-evoked whole cell currents were small. Co-expressed with P2X7A, the ΔC splice variant acted in a dominant negative fashion to inhibit function.
Pfizer KO mice are not null for P2X7 receptor expression but express ΔC variants with reduced function.
P2X7 受体转录本的剪接变体导致了受体介导的反应的多样性。在这里,我们研究了 mP2X7 受体的 C 端截断(ΔC)变体的表达和功能,这些变体预计在一种 P2X7(-/-)(Pfizer KO)小鼠品系中逃避失活。
通过反转录(RT)-PCR 和 Western blot 分析研究了野生型(WT)和 Pfizer KO 组织中的表达。还克隆和表达了 ΔC 变体,以研究它们的组装、运输和功能。
RT-PCR 表明,在 WT 和 Pfizer KO 小鼠的脑、唾液腺(SG)和脾中表达了一种 ΔC 剪接变体。在 KO 小鼠中还鉴定了一种额外的 ΔC 杂交转录本,其中包含 P2X7 上游的序列,包含外显子 12 的一部分,随后是用于破坏 P2X7 基因的载体的序列。通过蓝 Native(BN)PAGE 分析和使用交联试剂随后进行 SDS-PAGE,在 Pfizer KO 小鼠的脾和 SG 中检测到 P2X7 三聚体、二聚体和单体。与 WT 小鼠组织中的 P2X7 相比,分子质量降低,与 ΔC 变体一致。当在 HEK293 细胞中表达时,ΔC 变体的转运效率较低,激动剂诱导的全细胞电流较小。与 P2X7A 共表达时,ΔC 剪接变体以显性负性方式发挥作用,抑制功能。
Pfizer KO 小鼠并非 P2X7 受体表达的完全缺失,但表达了功能降低的 ΔC 变体。