“变性的蛋白质易于沉淀,但沉淀的蛋白质不一定变性。”这句话能解释下吗?求详细……

生物化学
2025-03-15 23:06:59
推荐回答(3个)
回答1:

蛋白质的变性与沉淀有密不可分的关系,常可以看到变性的蛋白质在溶液中沉淀,但并不是所有变性的蛋白质都会在溶液中沉淀。具体地说,变性蛋白质一般易于沉淀,但也可不变性而使蛋白质沉淀,在一定条件下,变性的蛋白质也可不发生沉淀,变性蛋白质只在等电点附近才沉淀,沉淀的变性蛋白质也不一定凝固。例如,蛋白质被强酸、强碱变性后由于蛋白质颗粒带着大量电荷,故仍溶于强酸或强减之中。但若将强碱和强酸溶液的pH调节到等电点,则变性蛋白质凝集成絮状沉淀物,若将此絮状物加热,则分子间相互盘缠而变成较为坚固的凝块。
蛋白质沉淀的原理。蛋白质形成的亲水胶体颗粒具有两种稳定因素,即颗粒表面的水化层和电荷。若无外加条件,不致互相凝集。然而除掉这两个稳定因素(如调节溶液pH至等电点和加入脱水剂),蛋白质便容易凝集析出。如将蛋白质溶液pH调节到等电点,蛋白质分子呈等电状态,虽然分子间同性电荷相互排斥作用消失了。但是还有水化膜起保护作用,一般不致于发生凝聚作用,如果这时再加入某种脱水剂,除去蛋白质分子的水化膜,则蛋白质分子就会互相凝聚而析出沉淀。反之,先使蛋白质脱水,然后再调节pH到等电点,同样可使蛋白质沉淀析出。

回答2:

拿个鸡蛋倒几滴水,会有浑浊物,就是沉淀了。那就没有变性(质),还可以吃的。你拿个臭鸡蛋,很黏稠,变质了。明白吗?

回答3:

呃… 你煮鸡蛋,变性之后就不能溶解了。 你在鸡蛋清中加盐,产生沉淀,再加水,沉淀溶解。

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