de Bruin Eric C, Werten Marc W T, Laane Colja, de Wolf Frits A
Agrotechnological Research Institute, Wageningen, The Netherlands.
FEMS Yeast Res. 2002 Jan;1(4):291-8. doi: 10.1111/j.1567-1364.2002.tb00047.x.
Several yeast systems have recently been developed for the recombinant production of gelatin and collagen. Amino acid sequence-specific prolyl 4-hydroxylation is essential for the gel-forming capacity of gelatin and for the proper folding of (pro)collagen. This post-translational modification is generally considered to be absent in microbial eukaryotic systems and therefore co-expression of heterologous (human or animal) prolyl 4-hydroxylase would be required. However, we found that the well-known protein expression host Hansenula polymorpha unexpectedly does have the endogenous capacity for prolyl 4-hydroxylation. Without co-expression of a heterologous prolyl 4-hydroxylase, both an endogenous collagen-like protein and a heterologously expressed collagen fragment were found to be sequence-specifically hydroxylated.
最近已经开发了几种酵母系统用于明胶和胶原蛋白的重组生产。氨基酸序列特异性脯氨酰4-羟化对于明胶的凝胶形成能力和(原)胶原蛋白的正确折叠至关重要。这种翻译后修饰通常被认为在微生物真核系统中不存在,因此需要共表达异源(人或动物)脯氨酰4-羟化酶。然而,我们发现著名的蛋白质表达宿主多形汉逊酵母出人意料地具有脯氨酰4-羟化的内源能力。在没有共表达异源脯氨酰4-羟化酶的情况下,发现一种内源类胶原蛋白和一种异源表达的胶原蛋白片段都被序列特异性羟化。