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冰岛型遗传性脑出血相关淀粉样纤维是γ-痕量碱性蛋白(胱抑素C)的一种变体。

Amyloid fibrils in hereditary cerebral hemorrhage with amyloidosis of Icelandic type is a variant of gamma-trace basic protein (cystatin C).

作者信息

Ghiso J, Jensson O, Frangione B

出版信息

Proc Natl Acad Sci U S A. 1986 May;83(9):2974-8. doi: 10.1073/pnas.83.9.2974.

Abstract

A gamma-trace variant protein is the major constituent of the amyloid fibrils in patients from Iceland with hereditary cerebral hemorrhage with amyloidosis. The protein consists of 110 residues and is similar to human urinary gamma-trace basic protein (or cystatin C) beginning at its 11th amino-terminal residue. It has an amino acid substitution (glutamine for leucine) at position 58 (position 68 in gamma-trace numbering), which is near the proposed active site of related proteins--namely, cysteine protease inhibitors and kininogens. It is postulated that a point mutation has occurred, leading to the production of an unusual protein that is abnormally degraded, bound, and/or precipitated. Alternatively, gamma-trace basic protein may be genetically polymorphic, and the variant described here may represent an as-yet-undiscovered isotype or an allelic form that is linked to, but not responsible for, the deposition disease. Our data on the structure of a gamma-trace variant protein suggests that its gene expresses a polyprotein precursor in which active peptides are flanked by basic amino acid residues that permit cleavage to liberate small internal peptides. It is likely that the nucleotide sequence coding for Arg-Xaa and Lys-Xaa repeated several times in the molecule may function as alternative splicing sites for mRNA processing.

摘要

γ-痕量变体蛋白是冰岛患有遗传性脑出血伴淀粉样变性患者淀粉样纤维的主要成分。该蛋白由110个氨基酸残基组成,从其第11个氨基末端残基开始与人类尿γ-痕量碱性蛋白(或胱抑素C)相似。它在第58位(γ-痕量编号中的第68位)有一个氨基酸替换(谷氨酰胺替换亮氨酸),该位置靠近相关蛋白(即半胱氨酸蛋白酶抑制剂和激肽原)的假定活性位点。据推测,发生了一个点突变,导致产生一种异常降解、结合和/或沉淀的异常蛋白。或者,γ-痕量碱性蛋白可能具有遗传多态性,这里描述的变体可能代表一种尚未发现的同型或等位基因形式,它与沉积性疾病有关,但不是其病因。我们关于γ-痕量变体蛋白结构的数据表明,其基因表达一种多蛋白前体,其中活性肽两侧是碱性氨基酸残基,这些残基允许切割以释放小的内部肽。分子中多次重复的编码精氨酸-Xaa和赖氨酸-Xaa的核苷酸序列可能作为mRNA加工的可变剪接位点发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c636/323429/a44991a26d98/pnas00313-0205-a.jpg

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