Lancaster Matthew K, Jones Sandra A, Harrison Simon M, Boyett Mark R
School of Sport and Exercise Sciences, University of Leeds, Leeds LS2 9JT, UK.
J Physiol. 2004 Apr 15;556(Pt 2):481-94. doi: 10.1113/jphysiol.2003.057372. Epub 2004 Jan 14.
Recent studies have proposed that release of calcium from the sarcoplasmic reticulum (SR) modulates the spontaneous activity of the sinoatrial node (SAN). Previously we have shown that several calcium regulatory proteins are expressed at a lower level in the centre of the SAN compared with the periphery. Such differences may produce heterogeneity of intracellular calcium handling and pacemaker activity across the SAN. Selective isolations showed that the centre of the SAN is composed of smaller cells than the periphery. Measurements of cytosolic calcium in spontaneously beating cells showed that diastolic calcium, systolic calcium, the calcium transient amplitude and spontaneous rate were greater in larger (likely to be peripheral) cells compared with smaller (likely to be central) SAN cells. The SR calcium content was greater in larger cells, although SR recruitment was more efficient in smaller cells. The sodium-calcium exchanger and sarcolemmal calcium ATPase had a lower activity and the exchanger was responsible for a larger proportion of sarcolemmal calcium extrusion in smaller cells compared with larger cells. Ryanodine had a greater effect on the spontaneous calcium transient in larger cells compared with smaller cells, and slowed pacemaker activity in larger cells but not smaller cells, thus abolishing the difference in cycle length. This study shows heterogeneity of intracellular calcium regulation within the SAN and this contributes to differences in pacemaker activity between cells from across the SAN. The smallest central cells of the leading pacemaker region of the SAN do not require SR calcium for spontaneous activity nor does disruption of the SR alter pacemaking in these primary pacemaker cells.
最近的研究表明,肌浆网(SR)释放的钙可调节窦房结(SAN)的自发活动。此前我们已经表明,与周边相比,几种钙调节蛋白在窦房结中心的表达水平较低。这种差异可能会导致整个窦房结内细胞内钙处理和起搏活动的异质性。选择性分离显示,窦房结中心的细胞比周边的细胞小。对自发搏动细胞的胞质钙测量表明,与较小的(可能是中心的)窦房结细胞相比,较大的(可能是周边的)细胞的舒张期钙、收缩期钙、钙瞬变幅度和自发率更高。较大细胞中的肌浆网钙含量更高,尽管较小细胞中的肌浆网钙募集更有效。与较大细胞相比,钠钙交换器和肌膜钙ATP酶在较小细胞中的活性较低,且交换器在较小细胞的肌膜钙外排中占更大比例。与较小细胞相比,ryanodine对较大细胞中自发钙瞬变的影响更大,并减缓了较大细胞而非较小细胞的起搏活动,从而消除了周期长度的差异。这项研究表明窦房结内细胞内钙调节存在异质性,这导致了整个窦房结细胞之间起搏活动的差异。窦房结主要起搏区域中最小的中心细胞的自发活动不需要肌浆网钙,破坏肌浆网也不会改变这些主要起搏细胞的起搏功能。