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与大鼠再生肝细胞核相关的糖胺聚糖和糖蛋白模式

Pattern of glycosaminoglycans and glycoproteins associated with nuclei of regenerating liver of rat.

作者信息

Furukawa K, Terayama H

出版信息

Biochim Biophys Acta. 1979 Jul 18;585(4):575-88. doi: 10.1016/0304-4165(79)90190-9.

Abstract
  1. Hyaluronic acid was detected as the largest glycosaminoglycan component in the glycosaminoglycan fraction from purified nuclei of regenerating livers as in the case of normal livers (Furukawa, K. and Tarayama, H. (1977) Biochim. Biophys. Acta 499, 278--289). However, the nuclear content of glycosaminoglycans tended to decrease after partial hepatectomy, reaching one-third of the normal liver level at 24--30 h after partial hepatectomy. On the other hand, two new polyanionic components were detected in the glycosaminoglycan fraction from regenerating liver nuclei. 2. One of these new components seems to be a sulfated glycopeptide. The 35SO4 incorporation into this component was stimulated biphasically after partial hepatectomy; the first stimulation occurring immediately after partial hepatectomy and the second stimulation occurring almost in parallel to the DNA synthesis. 3. Another polyacnionic component which also increases in the nuclear content after partial hepatectomy lacks hexuronic acid, sialic acid and 35SO4 and yet it is intensely stained by Alcian Blue. Preliminary investigations revealed the presence of hexose, ribose and phosphate as the major components. 4. In contrast to the primary localization of hyaluronic acid in the chromatin fraction and also in the nonhistone chromosomal protein fraction from it, these new polyanionic components were detected mainly in the karyosol fraction.
摘要
  1. 透明质酸在再生肝纯化细胞核的糖胺聚糖组分中被检测为最大的糖胺聚糖成分,正常肝脏情况也是如此(古川,K. 和田山,H.(1977)《生物化学与生物物理学报》499,278 - 289)。然而,部分肝切除术后糖胺聚糖的核含量趋于下降,在部分肝切除术后24 - 30小时降至正常肝脏水平的三分之一。另一方面,在再生肝细胞核的糖胺聚糖组分中检测到两种新的聚阴离子成分。2. 这些新成分之一似乎是一种硫酸化糖肽。部分肝切除术后,35SO4掺入该成分受到双相刺激;第一次刺激在部分肝切除术后立即发生,第二次刺激几乎与DNA合成同时发生。3. 另一种聚阴离子成分在部分肝切除术后核含量也增加,它缺乏己糖醛酸、唾液酸和35SO4,但仍被阿尔辛蓝强烈染色。初步研究表明存在己糖、核糖和磷酸盐作为主要成分。4. 与透明质酸主要定位于染色质组分以及由此产生的非组蛋白染色体蛋白组分不同,这些新的聚阴离子成分主要在核液组分中被检测到。

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