Fatherazi Sahba, Presland Richard B, Belton Carol M, Goodwin Paul, Al-Qutub Montaser, Trbic Zorica, Macdonald Glen, Schubert Mark M, Izutsu Kenneth T
Department of Oral Biology, University of Washington, Seattle, WA 98195-7132, USA.
Pflugers Arch. 2007 Mar;453(6):879-89. doi: 10.1007/s00424-006-0156-4. Epub 2006 Oct 10.
We previously demonstrated that high external [Ca(2+)] activated two Ca(2+) currents in human gingival keratinocytes (HGKs): an initial small I(CRAC)-like current and a second large nonspecific cation current (Fatherazi S, Belton CM, Cai S, Zarif S, Goodwin PC, Lamont RJ, Izutsu KT; Pflugers Arch 448:93-104, 2004). It was recently shown that TRPC1, a member of the transient receptor potential protein family, is a component of the store-operated calcium entry mechanism in keratinocytes. To further elucidate the molecular identity of these channels, we investigated the expression of TRPC4 in gingival tissue and in cultured keratinocytes, and the effect of knockdown of TRPC4 expression on the Ca(2+) currents and influx. Immunohistochemistry showed TRPC4 was present in gingival epithelium as well as in HGKs cultured in different [Ca(2+)]s. Results from tissue and cultured HGKs demonstrated TRPC4 expression decreased with differentiation. Knockdown of TRPC4 in proliferating HGKs with antisense oligonucleotides significantly reduced the intracellular [Ca(2+)] increase obtained upon exposure to high external [Ca(2+)]. Antisense knockdown of TRPC4 expression was confirmed by reverse transcriptase polymerase chain reaction, Western blot, and immunofluorescence microscopy of transfected HGKs. Immunofluorescence microscopy and patch clamp measurements in Lucifer-yellow-tagged, antisense-treated HGKs showed attenuation of TRPC4 expression levels as well as attenuation of the I(CRAC)-like current in the same cell, whereas the large nonspecific cation current was unchanged but significantly delayed. Cells transfected with a scrambled TRPC4 oligonucleotide showed no change in either the I(CRAC)-like or nonspecific currents. The results indicate that TRPC4 is an important component of the I(CRAC)-like channel in HGKs.
我们先前证明,高细胞外[Ca(2+)]可激活人牙龈角质形成细胞(HGKs)中的两种Ca(2+)电流:初始的小I(CRAC)样电流和第二种大的非特异性阳离子电流(Fatherazi S、Belton CM、Cai S、Zarif S、Goodwin PC、Lamont RJ、Izutsu KT;《普弗吕格氏文献》448:93 - 104,2004年)。最近有研究表明,瞬时受体电位蛋白家族成员TRPC1是角质形成细胞中储存式钙内流机制的一个组成部分。为了进一步阐明这些通道的分子特性,我们研究了TRPC4在牙龈组织和培养的角质形成细胞中的表达,以及敲低TRPC4表达对Ca(2+)电流和内流的影响。免疫组织化学显示TRPC4存在于牙龈上皮以及在不同[Ca(2+)]条件下培养的HGKs中。组织和培养的HGKs结果表明,TRPC4表达随分化而降低。用反义寡核苷酸敲低增殖HGKs中的TRPC4可显著降低暴露于高细胞外[Ca(2+)]时细胞内[Ca(2+)]的增加。通过逆转录聚合酶链反应、蛋白质印迹法以及对转染HGKs的免疫荧光显微镜检查证实了TRPC4表达的反义敲低。对用荧光黄标记的反义处理HGKs进行免疫荧光显微镜检查和膜片钳测量显示,TRPC4表达水平降低,同一细胞中的I(CRAC)样电流也减弱,而大的非特异性阳离子电流未改变,但明显延迟。用乱序TRPC4寡核苷酸转染的细胞在I(CRAC)样电流或非特异性电流方面均无变化。结果表明,TRPC4是HGKs中I(CRAC)样通道的重要组成部分。