Department of Biochemistry, Stanford University School of Medicine, Stanford, CA 94305-5307, USA.
Proc Natl Acad Sci U S A. 2010 Nov 16;107(46):19614-8. doi: 10.1073/pnas.1011016107. Epub 2010 Nov 2.
The Golgi complex is a central processing compartment in the secretory pathway of eukaryotic cells. This essential compartment processes more than 30% of the proteins encoded by the human genome, yet we still do not fully understand how the Golgi is assembled and how proteins pass through it. Recent advances in our understanding of the molecular basis for protein transport through the Golgi and within the endocytic pathway provide clues to how this complex organelle may function and how proteins may be transported through it. Described here is a possible model for transport of cargo through a tightly stacked Golgi that involves continual fusion and fission of stable, "like" subcompartments and provides a mechanism to grow the Golgi complex from a stable progenitor, in an ordered manner.
高尔基体复合体是真核细胞分泌途径中的一个重要的中央处理室。这个必需的室处理了超过 30%的由人类基因组编码的蛋白质,然而我们仍然不完全理解高尔基体是如何组装的,以及蛋白质是如何通过它的。最近,我们对蛋白质通过高尔基体和内吞途径运输的分子基础的理解取得了一些进展,为理解这个复杂的细胞器如何发挥作用以及蛋白质如何通过它运输提供了线索。这里描述的是一种通过紧密堆叠的高尔基体运输货物的可能模型,它涉及到稳定的“类似”亚室的不断融合和分裂,并提供了一种有序地从稳定的前体生长高尔基体复合体的机制。