首页> 外文OA文献 >Chromophore switch from 11-cis-dehydroretinal (A2) to 11-cis-retinal (A1) decreases dark noise in salamander red rods
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Chromophore switch from 11-cis-dehydroretinal (A2) to 11-cis-retinal (A1) decreases dark noise in salamander red rods

机译:将发色团从11-顺-视黄醛(A2)转换为11-顺-视黄醛(A1)可减少sal红色棒中的暗噪声

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摘要

Dark noise, light-induced noise and responses to brief flashes of light were recorded in the membrane current of isolated rods from larval tiger salamander retina before and after bleaching most of the native visual pigment, which mainly has the 11-cis-3,4-dehydroretinal (A2) chromophore, and regenerating with the 11-cis-retinal (A1) chromophore in the same isolated rods. The purpose was to test the hypothesis that blue-shifting the pigment by switching from A2 to A1 will decrease the rate of spontaneous thermal activations and thus intrinsic light-like noise in the rod. Complete recordings were obtained in five cells (21°C). Based on the wavelength of maximum absorbance, λmax,A1 = 502 nm and λmax,A2 = 528 nm, the average A2 : A1 ratio determined from rod spectral sensitivities and absorbances was ∼0.74 : 0.26 in the native state and ∼0.09 : 0.91 in the final state. In the native (A2) state, the single-quantum response (SQR) had an amplitude of 0.41 ± 0.03 pA and an integration time of 3.16 ± 0.15 s (mean ± s.e.m.). The low-frequency branch of the dark noise power spectrum was consistent with discrete SQR-like events occurring at a rate of 0.238 ± 0.026 rod−1 s−1. The corresponding values in the final state were 0.57 ± 0.07 pA (SQR amplitude), 3.47 ± 0.26 s (SQR integration time), and 0.030 ± 0.006 rod−1 s−1 (rate of dark events). Thus the rate of dark events per rod and the fraction of A2 pigment both changed by ca 8-fold between the native and final states, indicating that the dark events originated mainly in A2 molecules even in the final state. By extrapolating the linear relation between event rates and A2 fraction to 0% A2 (100% A1) and 100% A2 (0% A1), we estimated that the A1 pigment is at least 36 times more stable than the A2 pigment. The noise component attributed to discrete dark events accounted for 73% of the total dark current variance in the native (A2) state and 46% in the final state. The power spectrum of the remaining ‘continuous’ noise component did not differ between the two states. The smaller and faster SQR in the native (A2) state is consistent with the idea that the rod behaves as if light-adapted by dark events that occur at a rate of nearly one per integration time. Both the decreased level of dark noise and the increased SQR amplitude must significantly improve the reliability of photon detection in dim light in the presence of the A1 chromophore compared to the native (A2) state in salamander rods.
机译:在漂白大多数天然视觉色素(主要具有11-顺3,4)之前和之后,从幼体虎re视网膜分离的杆的膜电流中记录了暗噪声,光诱导噪声和对短暂闪光的响应。 -dehydroretinal(A2)生色团,并在相同的分离棒中与11-cis-retinal(A1)生色团再生。目的是检验以下假设:通过从A2切换到A1将颜料蓝移,会降低自发热活化的速率,从而降低棒中的固有光样噪声。在五个电池(21°C)中获得了完整的记录。根据最大吸光度的波长λmax,A1 = 502 nm和λmax,A2 = 528 nm,由棒光谱灵敏度和吸光度确定的平均A2:A1比在原始状态下为〜0.74:0.26,在自然状态下为〜0.09:0.91最终状态。在原始(A2)状态下,单量子响应(SQR)的振幅为0.41±0.03 pA,积分时间为3.16±0.15 s(平均±s.e.m.)。暗噪声功率谱的低频分支与以0.238±0.026 rod-1 s-1的速率发生的离散SQR类事件一致。最终状态下的相应值为0.57±0.07 pA(SQR振幅),3.47±0.26 s(SQR积分时间)和0.030±0.006 rod-1 s-1(暗事件发生率)。因此,每个杆的暗事件的发生率和A2颜料的比例在原始状态和最终状态之间都变化了约8倍,这表明即使在最终状态下,暗事件也主要源自A2分子。通过将事件发生率和A2分数之间的线性关系外推到0%A2(100%A1)和100%A2(0%A1),我们估计A1颜料的稳定性至少比A2颜料高36倍。归因于离散暗事件的噪声分量在原始(A2)状态下占总暗电流方差的73%,在最终状态下占46%。其余两个“连续”噪声分量的功率谱在两个状态之间没有差异。原始(A2)状态下较小且较快的SQR与以下观点相一致:杆的行为就像是暗事件对光的适应,暗事件每积分时间的发生率接近一。与sal棒中的天然(A2​​)状态相比,在存在A1发色团的情况下,降低的暗噪声水平和增加的SQR振幅都必须显着提高在昏暗灯光下进行光子检测的可靠性。

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