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乳白蛋白水解物对SV3T3细胞血清生长因子需求的部分替代作用。

The partial replacement of the serum growth factor requirement of SV3T3 cells by lactalbumin hydrolyzate.

作者信息

Young D V

出版信息

J Cell Physiol. 1976 Sep;89(1):133-41. doi: 10.1002/jcp.1040890113.

Abstract

Lactalbumin hydrolyzate (LH), a commercially prepared, enzymatic digest of a milk protein fraction, can partially replace the serum requirement of SV3T3 cells. In a low, but obligatory, background of calf serum (0.15% v/v), LH carses a large increase in the final cell density (5-10 x over the control) while modestly steimulating the actual growth rate. Lactalbumin hydrolyzate does not contain survival activity for SV3T3 cells and does not affect the growth of 3T3 cells. Since even prolonged exposure to pH 4 or 2 results in complete abolishment of the growth-rate stimulatory capability without affecting the capacity to increase the final cell density, it is possible that the LH growth activity may consist of two dissociable components. All of LH growth activity is water soluble, autoclavable, and resists proteolytic treatment. On Sephadex G15 growth activity appears as a single peak at the void volume but on G25 it is retained beyond the void volume as a broad, skewed peak. The relevant molecular weight range lies between 1,500 and 4,000. The putative low pH resistant material is strongly adsorbed to Dowex 1 x 2 and can be displaced from the column by a reduction in the pH. A comparison of the properties of the LH factors with those of known growth promoting agents isolated from serum and various enzymatic digests indicates that these new factors do not correspond to any of these agents.

摘要

乳白蛋白水解物(LH)是一种商业制备的牛奶蛋白组分的酶解产物,它可以部分替代SV3T3细胞对血清的需求。在低浓度但必不可少的小牛血清背景(0.15% v/v)下,LH可使最终细胞密度大幅增加(比对照高5至10倍),同时适度刺激实际生长速率。乳白蛋白水解物对SV3T3细胞不具有存活活性,也不影响3T3细胞的生长。由于即使长时间暴露于pH 4或2也会导致生长速率刺激能力完全丧失,而不影响增加最终细胞密度的能力,因此LH的生长活性可能由两个可分离的成分组成。LH的所有生长活性都是水溶性的、可高压灭菌的,并且能抵抗蛋白水解处理。在Sephadex G15上,生长活性在空体积处呈现为一个单峰,但在G25上,它在空体积之后以一个宽的、倾斜的峰保留下来。相关分子量范围在1500至4000之间。推测的耐低pH物质强烈吸附于Dowex 1 x 2上,并且可以通过降低pH值从柱上洗脱下来。将LH因子的性质与从血清和各种酶解产物中分离出的已知生长促进剂的性质进行比较表明,这些新因子与这些试剂中的任何一种都不对应。

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