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测定糜蛋白酶原中的某些氨基酸及其分子量。

DETERMINATION OF CERTAIN AMINO ACIDS IN CHYMOTRYPSINOGEN, AND ITS MOLECULAR WEIGHT.

机构信息

Department of Biochemistry, College of Physicians and Surgeons, Columbia University, New York.

出版信息

J Gen Physiol. 1941 Nov 20;25(2):167-76. doi: 10.1085/jgp.25.2.167.

Abstract
  1. A preparation of chymotrypsinogen, obtained from Dr. M. Kunitz, was analyzed for sulfur, the sulfur amino acids, tyrosine, and tryptophane. 2. The protein sulfur of chymotrypsinogen was accounted for as methionine, cysteine, and cystine. 3. A method is presented for calculating the minimum molecular weight of a protein from the distribution of the sulfur amino acids. In the case of chymotrypsinogen, the calculated minimum molecular weight was found to be the actual molecular weight. 4. The molecular weight of chymotrypsinogen is 36,700 by amino acid analysis as compared to 36,000 by osmotic pressure measurements of Kunitz and Northrop. Chymotrypsinogen contains per mol 17 atoms of sulfur, 3 residues of methionine, 4 of cysteine, 10 of half-cystine (i.e. 5 S-S linkages), 6 of tyrosine, and 10 of tryptophane. 5. The tryptophane content of chymotrypsinogen (5.51 per cent) is the highest of any protein so far on record. 6. Chymotrypsinogen contains no reactive SH groups, although it yields cysteine on hydrolysis. This may be due either to preformed but unreactive SH groups or to S-X groups. The term S-X group is used to denote the substitution of the sulfhydryl hydrogen by a constituent X; hydrolysis yields SH groups: S-X + HOH = SH + X-OH.
摘要
  1. 一种由 M. Kunitz 博士提供的糜蛋白酶原制剂被用于分析硫、含硫氨基酸、酪氨酸和色氨酸。

  2. 糜蛋白酶原的蛋白质硫被确定为蛋氨酸、半胱氨酸和胱氨酸。

  3. 提出了一种根据含硫氨基酸分布计算蛋白质最小分子量的方法。在糜蛋白酶原的情况下,计算得到的最小分子量与 Kunitz 和 Northrop 的渗透压测量得到的实际分子量相符。

  4. 通过氨基酸分析,糜蛋白酶原的分子量为 36700,而通过 Kunitz 和 Northrop 的渗透压测量,分子量为 36000。糜蛋白酶原每摩尔含有 17 个硫原子、3 个蛋氨酸残基、4 个半胱氨酸残基、10 个胱氨酸残基(即 5 个 S-S 键)、6 个酪氨酸残基和 10 个色氨酸残基。

  5. 糜蛋白酶原的色氨酸含量(5.51%)是迄今为止记录的任何蛋白质中最高的。

  6. 糜蛋白酶原不含反应性 SH 基团,尽管它在水解时会产生半胱氨酸。这可能是由于预先形成但无反应性的 SH 基团或 S-X 基团所致。术语 S-X 基团用于表示巯基氢被取代基 X 取代;水解生成 SH 基团:S-X + HOH = SH + X-OH。

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