Johnson P T, Williams R R, Reese B E
Neuroscience Research Institute, and Department of Molecular, Cellular and Developmental Biology, University of California at Santa Barbara, 93106-5060, USA.
Vis Neurosci. 2001 Jan-Feb;18(1):157-68. doi: 10.1017/s0952523801181150.
The present study has examined the spatial and temporal expression patterns of various proteins associated with the structure and function of mature photoreceptor outer segments in the developing ferret's retina using immunocytochemistry and RT-PCR. One set of proteins, including rod opsin, arrestin, and recoverin, was detected progressively in photoreceptors as they became postmitotic, being expressed well before the differentiation of outer segments. A second set of proteins, including beta- and gamma-transducin, cGMP-phosphodiesterase, phosducin, rhodopsin kinase, rod cGMP-gated cation channel protein, and peripherin, displayed a contrasting temporal onset and pattern of spatial emergence. These latter proteins first became detectable either shortly before or coincident with outer segment formation, and were expressed simultaneously in both older and younger photoreceptor cells. A third set, the short wavelength-sensitive (SWS) and medium wavelength-sensitive (MWS) cone opsin proteins, was the last to be detected, but materialized in a spatio-temporal pattern reminiscent of the neurogenetic gradient of the cones. These different spatial and temporal patterns indicate that cellular maturation must play a primary role in regulating the onset of expression of some of these proteins, while extrinsic signals must act to coordinate the expression of other proteins across photoreceptors of different ages.
本研究利用免疫细胞化学和逆转录聚合酶链反应(RT-PCR),检测了发育中的雪貂视网膜中与成熟光感受器外段结构和功能相关的各种蛋白质的时空表达模式。一组蛋白质,包括视杆视蛋白、抑制蛋白和恢复蛋白,在光感受器进入有丝分裂后期时逐渐被检测到,在外段分化之前就已大量表达。第二组蛋白质,包括β-和γ-转导蛋白、环鸟苷酸磷酸二酯酶、光导蛋白、视紫红质激酶、视杆环鸟苷酸门控阳离子通道蛋白和外周蛋白,呈现出相反的时间起始和空间出现模式。后一组蛋白质最早在接近外段形成时或与之同时被检测到,并且在较老和较年轻的光感受器细胞中同时表达。第三组,即短波长敏感(SWS)和中波长敏感(MWS)视锥视蛋白,是最后被检测到的,但呈现出一种时空模式,让人联想到视锥细胞的神经发生梯度。这些不同的时空模式表明,细胞成熟必定在调控其中一些蛋白质表达的起始中起主要作用,而外在信号必定在协调不同年龄光感受器中其他蛋白质的表达方面发挥作用。