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胎鼠新皮质增殖区的细胞周期参数及核运动模式

Cell cycle parameters and patterns of nuclear movement in the neocortical proliferative zone of the fetal mouse.

作者信息

Takahashi T, Nowakowski R S, Caviness V S

机构信息

Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Boston 02114.

出版信息

J Neurosci. 1993 Feb;13(2):820-33. doi: 10.1523/JNEUROSCI.13-02-00820.1993.

Abstract

Cytogenesis is the critical determinant of the total number of neurons that contribute to the formation of the cerebral cortex and the rate at which the cells are produced. Two distinct cell populations constitute the proliferative population, a pseudostratified ventricular epithelium (PVE) lying within the ventricular zone (VZ) at the margin of the ventricle, and a secondary proliferative population that is intermixed with the PVE within the VZ but also is distributed through the overlying subventricular and intermediate zones of the cerebral wall. The present analysis, based upon cumulative S-phase labeling of the proliferative cells with 5-bromo-2'-deoxyuridine, is principally concerned with the PVE of the gestational-day-14 (E14) murine cerebral wall. It has immediate but also more far reaching general objectives. The most immediate objective, essential to the design and interpretation of later experiments, is to provide estimates of critical parameters of cytogenesis for the PVE. The growth fraction is virtually 100%. The lengths of the overall cell cycle, S-, G2+M-m, and G1-phases are 15.1 hr, 3.8 hr, 2 hr, and 9.3 hr, respectively. The PVE is homogeneous with respect to cell cycle length. For methodological considerations, these estimates are more accurate than estimates of the same parameters obtained in earlier analyses based upon S-phase labeling with tritiated thymidine. It is particularly with respect to a shorter length of S-phase determined here that the present values are different from those obtained with thymidine. At a more innovative level, the temporal and spatial resolution of nuclear movement made possible by the methods developed here will allow, in a way not previously attempted, a fine-grained tracking of nuclear movement as cells execute the successive stages of the cell cycle or exit the cycle subsequent to mitosis. Such observations are pertinent to our understanding of the regulatory mechanisms of neocortical histogenesis and the cell biological mechanisms that govern the proliferative cycle of the ventricular epithelium itself. It is known that the velocity of nuclear movement in the PVE is maximum in G2 (fourfold increase from S-phase) and minimum in M and early G1.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

细胞发生是决定参与大脑皮层形成的神经元总数以及细胞产生速率的关键因素。有两个不同的细胞群体构成了增殖群体,一个是位于脑室边缘脑室区(VZ)的假复层室管膜上皮(PVE),另一个是二级增殖群体,它与VZ内的PVE混合,但也分布在大脑壁上方的室下区和中间区。本分析基于用5-溴-2'-脱氧尿苷对增殖细胞进行累积S期标记,主要关注妊娠第14天(E14)小鼠大脑壁的PVE。它有直接的目标,也有更深远的总体目标。最直接的目标对于后续实验的设计和解释至关重要,即提供PVE细胞发生关键参数的估计值。生长分数几乎为100%。整个细胞周期、S期、G2+M期和G1期的时长分别为15.1小时、3.8小时、2小时和9.3小时。PVE在细胞周期长度方面是均匀的。出于方法学考虑,这些估计值比早期基于用氚标记胸腺嘧啶进行S期标记所获得的相同参数的估计值更准确。特别是在此处确定的较短S期时长方面,当前值与用胸腺嘧啶获得的值不同。在更具创新性的层面上,此处开发的方法所实现的核运动的时间和空间分辨率将以一种前所未有的方式,在细胞执行细胞周期的连续阶段或有丝分裂后退出周期时,对核运动进行精细追踪。这些观察结果与我们对新皮质组织发生的调节机制以及控制室管膜上皮增殖周期的细胞生物学机制的理解相关。已知PVE中核运动速度在G2期最大(比S期增加四倍),在M期和早期G1期最小。(摘要截选至400字)

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