Ohno H, Blackwell J, Jamieson A M, Carrino D A, Caplan A I
Biochem J. 1986 Apr 15;235(2):553-7. doi: 10.1042/bj2350553.
Calibration relationships were derived for cartilage proteoglycan subunit (PGS) that relate the inverse z-average hydrodynamic radius (Rs) and the weight-average Mr (Mw) to the partition coefficient (Kav.) for PGS when chromatographed on a Sepharose CL-2B column. PGS isolated from chick limb-bud chondrocyte cell cultures was fractionated chromatographically into eight pools, for which Mw and Rs were determined by total-intensity and dynamic light-scattering measurements. These data were found to be related to Kav. through the following empirical equations: log Mw = -(1.65 +/- 0.27)Kav. +(6.58 +/- 0.08); log Rs = -(0.69 +/- 0.04)Kav. +(2.75 +/- 0.01). Application of these relationships to the chromatographic data led to Mw = 1.48 X 10(6) and Rs = 38.7 nm (387 A) for the unfractionated specimens compared with values of Mw = 1.46 X 10(6) and Rs = 38.2 nm (382 A) determined by light-scattering. Our results were found to be consistent with previously proposed phenomenological models for the gel-filtration mechanism. Application of these calibration relationships to Kav. for several unfractionated specimens led to predicted values of Mw and Rs that are accurate to within 10%.
推导了软骨蛋白聚糖亚基(PGS)的校准关系,该关系将反向z平均流体动力学半径(Rs)和重均分子量(Mw)与PGS在琼脂糖CL - 2B柱上进行色谱分离时的分配系数(Kav.)相关联。从鸡肢芽软骨细胞培养物中分离的PGS通过色谱法分离成八个组分,通过总强度和动态光散射测量确定了Mw和Rs。发现这些数据通过以下经验方程与Kav.相关:log Mw = -(1.65 +/- 0.27)Kav. +(6.58 +/- 0.08);log Rs = -(0.69 +/- 0.04)Kav. +(2.75 +/- 0.01)。将这些关系应用于色谱数据,对于未分级的样品,得到Mw = 1.48×10(6)和Rs = 38.7 nm(387 Å),而通过光散射测定的值为Mw = 1.46×10(6)和Rs = 38.2 nm(382 Å)。我们的结果与先前提出的凝胶过滤机制的现象学模型一致。将这些校准关系应用于几个未分级样品的Kav.,得到的Mw和Rs预测值的准确度在10%以内。