Castor C W, Miller J W, Walz D A
Proc Natl Acad Sci U S A. 1983 Feb;80(3):765-9. doi: 10.1073/pnas.80.3.765.
Connective tissue activating peptides (CTAPs) extracted from leukocytes and platelets stimulate glycolysis and synthesis of glycosaminoglycan and DNA in cultured human connective tissue cells. CTAP-III, isolated from fresh or outdated human platelets, is a low molecular weight single-chain protein with an isoelectric point of 8.5 that markedly stimulates DNA synthesis and multiple aspects of glycosaminoglycan and proteoglycan metabolism. This report presents a definitive comparison of CTAP-III prepared by two methods [one designated (A), alternative] with similar platelet proteins described by others, beta-thromboglobulin (beta-TG) and low-affinity platelet factor 4 (LA-PF-4). CTAP-III, CTAP-III(A), LA-PF-4, and beta-TG have common antigenic determinants documented by immunoprecipitation and radioimmunoassay. CTAP-III, CTAP-III(A), and LA-PF-4 are biologically active in that they stimulate DNA and glycosaminoglycan synthesis by human synovial cells; beta-TG is inactive. Carboxyl-terminal digestion gave identical terminal sequences for CTAP-III, CTAP-III(A), and beta-TG. Amino-terminal sequence data indicate that CTAP-III and CTAP-III(A) (also LA-PF-4) are identical and differ from beta-TG only by an additional amino-terminal tetrapeptide (Asn-Leu-Ala-Lys-). The biologically active molecule, CTAP-III, may be proteolytically converted to its inactive degradation product (beta-TG) in the course of platelet aging, platelet storage, release from the platelets, or initiation of biological activity.
从白细胞和血小板中提取的结缔组织激活肽(CTAPs)可刺激培养的人结缔组织细胞中的糖酵解以及糖胺聚糖和DNA的合成。从新鲜或过期人血小板中分离出的CTAP-III是一种低分子量单链蛋白,其等电点为8.5,可显著刺激DNA合成以及糖胺聚糖和蛋白聚糖代谢的多个方面。本报告对通过两种方法制备的CTAP-III [一种指定为(A),另一种]与其他人描述的类似血小板蛋白β-血小板球蛋白(β-TG)和低亲和力血小板因子4(LA-PF-4)进行了明确比较。通过免疫沉淀和放射免疫测定证明,CTAP-III、CTAP-III(A)、LA-PF-4和β-TG具有共同的抗原决定簇。CTAP-III、CTAP-III(A)和LA-PF-4具有生物活性,因为它们可刺激人滑膜细胞的DNA和糖胺聚糖合成;β-TG无活性。羧基末端消化后,CTAP-III、CTAP-III(A)和β-TG的末端序列相同。氨基末端序列数据表明,CTAP-III和CTAP-III(A)(以及LA-PF-4)相同,仅与β-TG相差一个额外的氨基末端四肽(天冬酰胺-亮氨酸-丙氨酸-赖氨酸-)。具有生物活性的分子CTAP-III可能在血小板老化、血小板储存、从血小板释放或生物活性启动过程中被蛋白水解转化为其无活性的降解产物(β-TG)。