Barisoni L, Mokrzycki M, Sablay L, Nagata M, Yamase H, Mundel P
Department of Pathology, New York University, New York 10016, USA.
Kidney Int. 2000 Jul;58(1):137-43. doi: 10.1046/j.1523-1755.2000.00149.x.
Mature podocytes are growth-arrested because of the expression of cyclin-dependent kinase inhibitors. Under pathological conditions, podocytes may undergo mitosis, but not cell division. Exceptions to this rule are collapsing glomerulopathies (CGs), including HIV-associated nephropathy (HIVAN) and idiopathic CG, where podocytes undergo a dysregulation of their differentiated phenotype and proliferate.
To shed light on the mechanism underlying podocyte proliferation in CG, we analyzed the expression of the proliferation marker Ki-67, cyclins (A, D1), cyclin-dependent kinase inhibitors (p27, p57), and podocyte differentiation marker synaptopodin in eight cases of HIVAN and two cases of idiopathic CG. Normal fetal and adult kidneys served as controls.
Both HIVAN and idiopathic CG showed a marked reduction in the expression of p27, p57, and cyclin D1 (absent in 69, 62, and 80% of all glomeruli, respectively). Cyclin A and Ki-67 were expressed in 11 and 29% of all glomeruli. Moreover, there was partial loss of synaptopodin and cyclin D1 expression in nonaffected glomeruli.
The loss of p27 and p57 leading to expression of cyclin A may account for the activation of podocyte proliferation in CG. Furthermore, the loss of cyclin D1 from histologically normal glomeruli suggests a possible role of cyclin D1 in mediating the dysregulation of the podocyte cell cycle in CG. These novel findings offer insight into the molecular regulation of mature podocyte differentiation. Podocyte proliferation in CG provides evidence in support of a previously underestimated plasticity of mature podocytes.
由于细胞周期蛋白依赖性激酶抑制剂的表达,成熟足细胞处于生长停滞状态。在病理条件下,足细胞可能会进行有丝分裂,但不会发生细胞分裂。这一规律的例外情况是塌陷性肾小球病(CGs),包括HIV相关性肾病(HIVAN)和特发性CG,其中足细胞的分化表型发生失调并增殖。
为了阐明CG中足细胞增殖的潜在机制,我们分析了8例HIVAN和2例特发性CG中增殖标志物Ki-67、细胞周期蛋白(A、D1)、细胞周期蛋白依赖性激酶抑制剂(p27、p57)以及足细胞分化标志物突触素的表达情况。正常胎儿和成人肾脏作为对照。
HIVAN和特发性CG均显示p27、p57和细胞周期蛋白D1的表达显著降低(分别在所有肾小球的69%、62%和80%中缺失)。细胞周期蛋白A和Ki-67分别在所有肾小球的11%和29%中表达。此外,在未受影响的肾小球中,突触素和细胞周期蛋白D1的表达部分缺失。
p27和p57的缺失导致细胞周期蛋白A的表达可能是CG中足细胞增殖激活的原因。此外,组织学正常的肾小球中细胞周期蛋白D1的缺失表明细胞周期蛋白D1可能在介导CG中足细胞细胞周期失调方面发挥作用。这些新发现为成熟足细胞分化的分子调控提供了见解。CG中的足细胞增殖为成熟足细胞先前被低估的可塑性提供了证据支持。