RDH12 可使视锥感光器从发色团前体中再生出视紫红质视觉色素,从而摆脱与视杆细胞的竞争。

IF 8.1 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Biology Pub Date : 2024-08-05 Epub Date: 2024-07-08 DOI:10.1016/j.cub.2024.06.031
Joanna J Kaylor, Rikard Frederiksen, Christina K Bedrosian, Melody Huang, David Stennis-Weatherspoon, Theodore Huynh, Tiffany Ngan, Varsha Mulamreddy, Alapakkam P Sampath, Gordon L Fain, Gabriel H Travis
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引用次数: 0

摘要

眼色素视觉色素捕捉到光子后,会将其 11-顺式视黄醛(11cRAL)发色团异构化为全反式视黄醛(atRAL),随后发生解离。为了恢复对光的敏感性,未连接的apo-opsin会与另一种11cRAL结合,生成一种新的视觉色素。有两种酶途径为感光器提供色素。视网膜色素上皮细胞中的典型视觉循环以较低的速率供应 11cRAL。Müller 细胞中的光视觉循环则以较高的速率为视锥提供 11cROL 发色团前体。虽然视杆细胞只能利用 11cRAL 再生视紫红质,但视锥细胞可以利用 11cRAL 或 11cROL 再生视锥视觉色素。我们在斑马鱼视网膜中进行了筛选,发现 ZCRDH 是锥体内节中将 11cROL 转化为 11cRAL 的候选酶。对Zcrdh突变斑马鱼眼睛的视黄醇分析表明,11cRAL水平降低,而11cROL水平升高,这表明11cROL向11cRAL的转化发生了障碍。通过显微分光光度法,分离的 Zcrdh 突变体锥状体失去了从 11cROL 再生视觉色素的能力。因此,ZCRDH 具有视锥 11cROL 脱氢酶的所有预测特性。与 ZCRDH 最相似的人类蛋白质是 RDH12。通过免疫细胞化学,ZCRDH 大量存在于锥体内节,与报告的 RDH12 的分布相似。最后,RDH12 是哺乳动物中唯一表现出 11cROL 氧化酶催化活性的候选蛋白。这些观察结果表明,哺乳动物中的 RDH12 是 ZCRDH 的功能直向同源物,ZCRDH 允许视锥(而非视杆细胞)从 Müller 细胞提供的 11cROL 中再生视觉色素。这种能力使视锥能够在日光照射下的视网膜中摆脱视杆细胞对视觉色素的竞争。
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RDH12 allows cone photoreceptors to regenerate opsin visual pigments from a chromophore precursor to escape competition with rods.

Capture of a photon by an opsin visual pigment isomerizes its 11-cis-retinaldehyde (11cRAL) chromophore to all-trans-retinaldehyde (atRAL), which subsequently dissociates. To restore light sensitivity, the unliganded apo-opsin combines with another 11cRAL to make a new visual pigment. Two enzyme pathways supply chromophore to photoreceptors. The canonical visual cycle in retinal pigment epithelial cells supplies 11cRAL at low rates. The photic visual cycle in Müller cells supplies cones with 11-cis-retinol (11cROL) chromophore precursor at high rates. Although rods can only use 11cRAL to regenerate rhodopsin, cones can use 11cRAL or 11cROL to regenerate cone visual pigments. We performed a screen in zebrafish retinas and identified ZCRDH as a candidate for the enzyme that converts 11cROL to 11cRAL in cone inner segments. Retinoid analysis of eyes from Zcrdh-mutant zebrafish showed reduced 11cRAL and increased 11cROL levels, suggesting impaired conversion of 11cROL to 11cRAL. By microspectrophotometry, isolated Zcrdh-mutant cones lost the capacity to regenerate visual pigments from 11cROL. ZCRDH therefore possesses all predicted properties of the cone 11cROL dehydrogenase. The human protein most similar to ZCRDH is RDH12. By immunocytochemistry, ZCRDH was abundantly present in cone inner segments, similar to the reported distribution of RDH12. Finally, RDH12 was the only mammalian candidate protein to exhibit 11cROL-oxidase catalytic activity. These observations suggest that RDH12 in mammals is the functional ortholog of ZCRDH, which allows cones, but not rods, to regenerate visual pigments from 11cROL provided by Müller cells. This capacity permits cones to escape competition from rods for visual chromophore in daylight-exposed retinas.

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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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