Godreau David, Vranckx Roger, Maguy Ange, Rücker-Martin Catherine, Goyenvalle Catherine, Abdelshafy Salah, Tessier Sophie, Couétil Jean Paul, Hatem Stéphane N
INSERM Unité 460, Faculté de Médecine Xavier Bichat, 16 rue Henri Huchard, 75018, Paris, France.
Cardiovasc Res. 2002 Dec;56(3):433-42. doi: 10.1016/s0008-6363(02)00602-8.
In various cell types, membrane-associated guanylate kinases proteins called MAGUK play a major role in the spatial localization and clustering of ion channels. Here, we studied the expression and role of these anchoring proteins in human right atrial myocardium by means of various molecular, biochemical and physiological methods.
SAP-97, PSD-95, Chapsyn and SAP-102 messengers were detected by reverse transcriptase-polymerase chain reaction (RT-PCR) on mRNA extracted from both whole myocardium and isolated myocytes. Western blot revealed that the MAGUK protein SAP-97 and, to a lesser extent, PSD-95, is abundantly expressed in human atrial myocardium, while Chapsyn are almost undetectable. Confocal microscopic visualization of cryosection of atrial myocardium stained with the anti-PSD-95 family antibody showed positive staining at the plasma membrane level and cell extremity. Calpain-I cleaved both SAP-97 and PSD-95 proteins, resulting in an accumulation of short bands, including an 80-kDa band that was also detected in the cytosolic protein fraction. Immunoprecipitation of SAP-97 co-precipitated hKv1.5 channels, and vice versa. Co-expression of cloned SAP-97 and hKv1.5 channels in Chinese hamster ovarian (CHO) cells increased the K(+) current (157.00+/-19.45 pA/pF vs. 344.50+/-58.58 pA/pF at +50 mV).
The protein SAP-97 is abundantly expressed in human atrial myocardium in association with hKv1.5 channels, and probably contributes to regulating the functional expression of the latter.
在多种细胞类型中,称为膜相关鸟苷酸激酶(MAGUK)的蛋白质在离子通道的空间定位和聚集方面发挥着重要作用。在此,我们通过各种分子、生化和生理学方法研究了这些锚定蛋白在人右心房心肌中的表达及作用。
通过逆转录聚合酶链反应(RT-PCR)在从全心肌和分离的心肌细胞中提取的mRNA上检测到了SAP-97、PSD-95、Chapsyn和SAP-102信使核糖核酸。蛋白质印迹法显示,MAGUK蛋白SAP-97以及在较小程度上的PSD-95在人心房心肌中大量表达,而Chapsyn几乎检测不到。用抗PSD-95家族抗体染色的心房心肌冰冻切片的共聚焦显微镜观察显示,在质膜水平和细胞末端有阳性染色。钙蛋白酶-I切割了SAP-97和PSD-95蛋白,导致短条带的积累,包括在胞质蛋白组分中也检测到的一条80 kDa的条带。SAP-97的免疫沉淀共沉淀了hKv1.5通道,反之亦然。在中国仓鼠卵巢(CHO)细胞中克隆的SAP-97和hKv1.5通道的共表达增加了钾电流(在+50 mV时为157.00±19.45 pA/pF对344.50±58.58 pA/pF)。
蛋白SAP-97与hKv1.5通道一起在人心房心肌中大量表达,可能有助于调节后者的功能表达。