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一种基于视蛋白的光色素介导了泡螺昼夜节律起搏器的相位转移。

An opsin-based photopigment mediates phase shifts of the Bulla circadian pacemaker.

作者信息

Geusz M E, Page T L

机构信息

Department of Biology, University of Virginia, Charlottesville 22901.

出版信息

J Comp Physiol A. 1991 May;168(5):565-70. doi: 10.1007/BF00215078.

Abstract
  1. The spectral response of the circadian pacemaker of the eye of the mollusk Bulla gouldiana was examined in two ways: by using the latency of the first light-evoked compound action potential (CAP) as an acute photoresponse of the putative pacemaker cells of the eye, the basal retinal neurons (BRNs), and by measuring the effectiveness of monochromatic light pulses at resetting the pacemaker. 2. Through measurements of the spectral sensitivity of the acute response of the BRNs, a photopigment absorbing maximally near 490 nm (lambda max) was described. Action spectra of the acute response following isolation of the BRNs, by surgical removal of the distal photoreceptor layer or the use of low Ca2+ media to block chemical synapses on the BRNs, further suggested that a 490 nm lambda max photopigment is used in generating the acute light response. The spectral sensitivity of eyes adapted to a dim background illumination also agreed with the expected absorption of a 490 lambda max rhodopsin. 3. The effectiveness of monochromatic light pulses at shifting the phase of the circadian rhythm in CAP frequency suggested that the photopigment used in the entrainment of the pacemaker is the opsin based molecule identified through acute response measurements.
摘要
  1. 以两种方式研究了软体动物古氏泡螺眼睛昼夜节律起搏器的光谱响应:通过将首次光诱发复合动作电位(CAP)的潜伏期作为眼睛假定起搏器细胞即基底视网膜神经元(BRN)的急性光反应,以及通过测量单色光脉冲重置起搏器的有效性。2. 通过测量BRN急性反应的光谱敏感性,描述了一种在490nm(λmax)附近吸收最大的光色素。通过手术切除远端感光层或使用低钙培养基阻断BRN上的化学突触来分离BRN后,急性反应的作用光谱进一步表明,一种λmax为490nm的光色素用于产生急性光反应。适应昏暗背景光照的眼睛的光谱敏感性也与预期的λmax为490的视紫红质吸收一致。3. 单色光脉冲在改变CAP频率昼夜节律相位方面的有效性表明,用于起搏器同步的光色素是通过急性反应测量鉴定出的基于视蛋白的分子。

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