4.7 Article

Pkd1l1 complexes with Pkd2 on motile cilia and functions to establish the left-right axis

期刊

DEVELOPMENT
卷 138, 期 6, 页码 1121-1129

出版社

COMPANY BIOLOGISTS LTD
DOI: 10.1242/dev.058271

关键词

Left-right asymmetry; Nodal flow; Sensor; Dual-function cilia; Left-right dynein (Lrd); Medaka

资金

  1. Ministry of Education, Culture, Sports, Science and Technology of Japan
  2. Japan Society for the Promotion of Science
  3. Grants-in-Aid for Scientific Research [22127002, 20247030] Funding Source: KAKEN

向作者/读者索取更多资源

The internal organs of vertebrates show distinctive left-right asymmetry. Leftward extracellular fluid flow at the node (nodal flow), which is generated by the rotational movement of node cilia, is essential for left-right patterning in the mouse and other vertebrates. However, the identity of the pathways by which nodal flow is interpreted remains controversial as the molecular sensors of this process are unknown. In the current study, we show that the medaka left-right mutant abecobe (abc) is defective for left-right asymmetric expression of southpaw, lefty and charon, but not for nodal flow. We identify the abc gene as pkd1l1, the expression of which is confined to Kupffer's vesicle (KV, an organ equivalent to the node). Pkd1l1 can interact and interdependently colocalize with Pkd2 at the cilia in KV. We further demonstrate that all KV cilia contain Pkd1l1 and Pkd2 and left-right dynein, and that they are motile. These results suggest that Pkd1l1 and Pkd2 form a complex that functions as the nodal flow sensor in the motile cilia of the medaka KV. We propose a new model for the role of cilia in left-right patterning in which the KV cilia have a dual function: to generate nodal flow and to interpret it through Pkd1l1-Pkd2 complexes.

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