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使用类视黄醇分析再生两栖动物肢体中位置记忆的细胞基础。

Use of retinoids to analyze the cellular basis of positional memory in regenerating amphibian limbs.

作者信息

Stocum D L, Crawford K

机构信息

University of Illinois, Department of Anatomical Sciences, Urbana 61801.

出版信息

Biochem Cell Biol. 1987 Aug;65(8):750-61. doi: 10.1139/o87-098.

DOI:10.1139/o87-098
PMID:3325080
Abstract

Cells of the amphibian limb regeneration blastema inherit memories of their level of origin (positional memory) along the limb axes. These memories serve as boundaries of what is to be regenerated, thus preventing regeneration of any but the missing structures. Because of its importance in determining the boundaries of regenerate pattern, it is essential to understand the cellular and molecular basis of positional memory. One approach to this problem is to look for position-related differences in a cell or molecular property along a limb axis and then show, using an agent that modifies regenerate pattern, that the cell or molecular property and the pattern are coordinately modified. We have done this using retinoic acid (RA) as a pattern-modifying agent and an in vivo assay that detects position-related differences in a cell recognition-affinity property along the proximodistal (PD) axis of the regenerating axolotl limb. RA proximalizes positional memory in the PD axis, posteriorizes it in the anteroposterior axis, and ventralizes it in the dorsoventral axis. The level-specific PD cell recognition-affinity property is proximalized by RA, indicating that this property and positional memory are causally related. The effects of RA on positional memory may be mediated through a cellular RA-binding protein (CRABP), since the concentration of unbound (apo) CRABP molecules is highest during early stages of regeneration when the proximalizing effects of RA are greatest.

摘要

两栖动物肢体再生芽基的细胞沿肢体轴继承其起源水平的记忆(位置记忆)。这些记忆作为再生范围的边界,从而阻止除缺失结构外的任何结构再生。由于其在确定再生模式边界方面的重要性,了解位置记忆的细胞和分子基础至关重要。解决这个问题的一种方法是寻找沿肢体轴在细胞或分子特性上与位置相关的差异,然后使用一种改变再生模式的试剂来证明,细胞或分子特性与模式是协同改变的。我们使用视黄酸(RA)作为模式改变试剂,并通过一种体内检测方法来完成这项工作,该方法可检测再生蝾螈肢体近端 - 远端(PD)轴上细胞识别亲和力特性中与位置相关的差异。RA使PD轴上的位置记忆近端化,使前后轴上的位置记忆后化,并使背腹轴上的位置记忆腹化。RA使特定水平的PD细胞识别亲和力特性近端化,表明该特性与位置记忆存在因果关系。RA对位置记忆的影响可能是通过一种细胞视黄酸结合蛋白(CRABP)介导的,因为未结合(脱辅基)CRABP分子的浓度在再生早期最高,此时RA的近端化作用最强。

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1
Use of retinoids to analyze the cellular basis of positional memory in regenerating amphibian limbs.使用类视黄醇分析再生两栖动物肢体中位置记忆的细胞基础。
Biochem Cell Biol. 1987 Aug;65(8):750-61. doi: 10.1139/o87-098.
2
[Regulation of the spatial organization of the regenerating extremity in amphibians].[两栖动物再生肢体空间组织的调控]
Ontogenez. 1990 Jan-Feb;21(1):5-31.
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The effect of retinoic acid on positional memory in the dorsoventral axis of regenerating axolotl limbs.视黄酸对再生蝾螈肢体背腹轴位置记忆的影响。
Dev Biol. 1990 Jul;140(1):41-52. doi: 10.1016/0012-1606(90)90051-j.
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Retinoic acid coordinately proximalizes regenerate pattern and blastema differential affinity in axolotl limbs.视黄酸协同使蝾螈肢体再生模式近端化并使芽基差异亲和力近端化。
Development. 1988 Apr;102(4):687-98. doi: 10.1242/dev.102.4.687.
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Retinoic acid proximalizes level-specific properties responsible for intercalary regeneration in axolotl limbs.视黄酸使负责蝾螈肢体居间再生的水平特异性特性向近端化。
Development. 1988 Dec;104(4):703-12. doi: 10.1242/dev.104.4.703.
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Retinoic acid-induced change in anteroposterior positional identity in regenerating axolotl limbs is dose-dependent.视黄酸诱导的再生蝾螈肢体前后位置身份变化具有剂量依赖性。
Dev Dyn. 1992 Mar;193(3):286-94. doi: 10.1002/aja.1001930309.
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Retinoic acid modifies positional memory in the anteroposterior axis of regenerating axolotl limbs.视黄酸改变再生蝾螈肢体前后轴中的位置记忆。
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Activation of a single retinoic acid receptor isoform mediates proximodistal respecification.单一视黄酸受体亚型的激活介导近远轴重指定。
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Effects of tunicamycin on retinoic acid induced respecification of positional values in regenerating limbs of the larval axolotl, Ambystoma mexicanum.衣霉素对墨西哥钝口螈幼体再生肢体中视黄酸诱导的位置值重新设定的影响。
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