Orlow I, Iavarone A, Crider-Miller S J, Bonilla F, Latres E, Lee M H, Gerald W L, Massagué J, Weissman B E, Cordón-Cardó C
Memorial Sloan-Kettering Cancer Center, New York 10021, USA.
Cancer Res. 1996 Mar 15;56(6):1219-21.
Mammalian cyclin-dependent kinase inhibitors fall into two families, the INK4 and the CIP/KIP. The CIP/KIP family comprises three structurally related members, including p21CiP1/WAF1, p27KIP1, and p57KIP2. These proteins are all capable of inhibiting the progression of the cell cycle by binding and inhibiting G(1) cyclin/cyclin-dependent kinase complexes. In humans, p57KIP2 is expressed specifically in skeletal muscle, heart, brain, kidney, and lung. Human KIP2 resides in 11p15.5, a chromosomal region that is a common site for loss of heterozygosity in certain sarcomas, Wilms' tumors, and tumors associated with the Beckwith-Wiedemann syndrome. Because of the function, selective expression, and chromosomal location of p57KIP2, we undertook the present study to search for potential mutations of KIP2 in a cohort of 126 tumors composed of 75 soft tissue sarcomas and 51 Wilms' tumors. The KIP2 gene was characterized by Southern blot, comparative multiplex PCR, PCR -single-strand conformational polymorphism, and DNA sequencing assays in these neoplasms. Deletions of the KIP2 gene or point mutations at the region encoding the cyclin-dependent kinase inhibitory domain were not found in the tumors analyzed. The absence of KIP2 mutations might indicate that these tumors arise due to defects at a closely linked but separate locus. Alternatively, similarly to the mouse homologue, inactivation of KIP2 could occur via genomic imprinting.
哺乳动物细胞周期蛋白依赖性激酶抑制剂可分为两个家族,即INK4和CIP/KIP。CIP/KIP家族包含三个结构相关的成员,包括p21CiP1/WAF1、p27KIP1和p57KIP2。这些蛋白都能够通过结合并抑制G(1)细胞周期蛋白/细胞周期蛋白依赖性激酶复合物来抑制细胞周期进程。在人类中,p57KIP2特异性表达于骨骼肌、心脏、脑、肾和肺。人类KIP2基因位于11p15.5,这是一个染色体区域,在某些肉瘤、肾母细胞瘤以及与贝克威思-维德曼综合征相关的肿瘤中,是杂合性缺失的常见位点。鉴于p57KIP2的功能、选择性表达和染色体定位,我们开展了本研究,在由75例软组织肉瘤和51例肾母细胞瘤组成的126例肿瘤队列中寻找KIP2的潜在突变。通过Southern印迹、比较多重PCR、PCR-单链构象多态性和DNA测序分析对这些肿瘤中的KIP2基因进行了鉴定。在所分析的肿瘤中未发现KIP2基因缺失或编码细胞周期蛋白依赖性激酶抑制结构域区域的点突变。KIP2突变的缺失可能表明这些肿瘤是由于紧密连锁但独立的位点存在缺陷而产生的。或者,与小鼠同源物类似,KIP2的失活可能通过基因组印记发生。