The angiogenins: An emerging family of ribonuclease related proteins with diverse cellular functions

被引:59
作者
Adams S.A. [1 ]
Subramanian V. [1 ,2 ]
机构
[1] Dept. of Biology and Biochemistry, University of Bath, Bath
[2] Dept. of Biology and Biochemistry, University of Bath, Claverton Down
基金
英国医学研究理事会;
关键词
Acute phase reaction; Angiogenesis; Angiogenin; Neoplasia; Polymorphonuclear leukocyte; Ribonuclease;
D O I
10.1023/A:1009015512200
中图分类号
学科分类号
摘要
Angiogenin is a member of the ribonuclease superfamily, which shows an ever expanding collection of molecules being identified and cloned. It was initially isolated from the conditioned medium of cultured tumour cells. Its angiogenic activity appears to be critical for the maintenance and support of tumour growth. Angiogenin also plays a role in a number of non-malignant vasculoproliferative pathological conditions. Along with other related molecules, it has been identified in a wide variety of somatic tissues in adult and embryonic stages of vertebrate development. This suggests that angiogenin and related molecules are likely to play a vital role in normal physiology. Angiogenin is detectable in serum and to date has been implicated as a mitogen for vascular endothelial cells, an immune modulator with suppressive effects on polymorphonuclear leukocytes, an activator of certain protease cascades such as matrix metalloproteases and plasminogen-activated plasmin pathways, as well as an adhesion molecule. However, the role of the angiogenin family in both normal and abnormal physiology and in development will only fully be realised by genetic approaches involving gene deletion.
引用
收藏
页码:189 / 199
页数:10
相关论文
共 110 条
[1]  
Polverini, P.J., The pathophysiology of angiogenesis (1995) Crit Rev Oral Biol, 6, pp. 230-247
[2]  
Folkman, J., Klagsbrun, M., Angiogenic factors (1987) Science, 235, pp. 442-447
[3]  
Folkman, J., Cotran, R.S., Relation of vascular proliferation to tumour growth (1976) Int Rev Exp Path, 16, pp. 207-248
[4]  
Folkman, J., Tumour angiogenesis: Therapeutic implications (1971) N Engl J Med, 285, pp. 1185-1186
[5]  
Blood, C.H., Zetter, B.R., Tumour interaction with the vasculature: Angiogenesis and tumour metastasis (1990) Biochim Biophys Acta, 1032, pp. 89-118
[6]  
Pepper, M.S., Vassalli, J.D., Montesano, R., Orci, L., Urokinase-type plasminogen activator is induced in migrating capillary endothelial cells (1987) J Cell Biol, 105, pp. 2535-2541
[7]  
Moscatelli, D., Rifkin, D.B., Membrane and matrix localisation of proteinases - A common theme in tumour cell invasion and angiogenesis (1988) Biochim Biophys Acta, 948, pp. 67-85
[8]  
Odekon, L.E., Sato, Y., Rifkin, D.B., Urokinase-type plasminogen activator mediates basic fibroblast growth factor induced bovine endothelial cell migration independent of its proteolytic activity (1992) J Cell Physiol, 150, pp. 258-263
[9]  
Thomas, K.A., Gimeneg-Gallego, G., Fibroblast growth factors: Broad spectrum mitogens with potent angiogenic activity (1986) Trends Biochem Sci USA, 11, pp. 81-84
[10]  
Leung, D.W., Cachiones, G., Kuangiogenin, W.J., Vascular endothelial growth factor is a secreted angiogenic mitogen (1989) Science, 246, pp. 1306-1312