Somers S S, Dye J F, Guillou P J
Academic Surgical Unit, St. Mary's Hospital, London, England, UK.
Cancer Immunol Immunother. 1991;33(4):217-22. doi: 10.1007/BF01744940.
Serum-free supernatants from the human melanoma cell line G361 contain a factor that can potently suppress the generation of tumouricidal lymphokine-activated killer (LAK) cells in response to interleukin-2. To characterise the suppressive factor of tumour origin we performed a number of physicochemical and functional comparisons with another immunosuppressive protein, transforming growth factor beta (TGF beta). The bioactivity of tumour-derived suppressor factor (TDSF), assayed by suppression of LAK cell generation, was unaffected by a reducing agent but lost when denatured with a chaotropic agent. In contrast, TGF beta was inactivated by reduction but not denaturation. TDSF lost bioactivity in conditions of pH less than 4, whereas TGF beta showed no loss of activity. The TDSF moiety has an estimated pI of 4.3 and a molecular mass of 69-87 kDa. This differs from published values of pI 9.5, and 25 kDa molecular mass for TGF beta. Anti-TGF beta antiserum reversed the effects of TGF beta but did not affect the suppression of LAK cell generation caused by TDSF. These findings provide compelling evidence that the TDSF moiety is not TGF beta, and may be a novel immunoregulatory cytokine.
人黑色素瘤细胞系G361的无血清上清液中含有一种因子,该因子能够有效抑制肿瘤杀伤性淋巴因子激活的杀伤细胞(LAK细胞)在白细胞介素-2作用下的生成。为了对肿瘤来源的抑制因子进行特性描述,我们将其与另一种免疫抑制蛋白——转化生长因子β(TGFβ)进行了一系列物理化学和功能方面的比较。通过抑制LAK细胞生成来检测的肿瘤来源抑制因子(TDSF)的生物活性不受还原剂影响,但用离液剂变性时则丧失活性。相比之下,TGFβ经还原后失活,但经变性后不失活。TDSF在pH小于4的条件下丧失生物活性,而TGFβ未表现出活性丧失。TDSF部分的估计等电点为4.3,分子量为69 - 87 kDa。这与已发表的TGFβ等电点9.5和分子量25 kDa的值不同。抗TGFβ抗血清可逆转TGFβ的作用,但不影响TDSF对LAK细胞生成的抑制作用。这些发现提供了令人信服的证据,表明TDSF部分不是TGFβ,可能是一种新型的免疫调节细胞因子。