Login / Signup
Jianing Li
ORCID
Publication Activity (10 Years)
Years Active: 2023-2023
Publications (10 Years): 8
Top Topics
Public Health
Antibiotic Resistance Genes
Dual Energy
Protein Kinase
Top Venues
The Journal of physiology
bioRxiv : the preprint server for biology
</>
This page only lists publications with an associated author ORCID identifier.
Publications
</>
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
bioRxiv : the preprint server for biology
(2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
bioRxiv : the preprint server for biology
(2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
(2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
602 (3) (2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
602 (3) (2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
602 (3) (2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
(2023)
Jianing Li
,
Priyadharishini Veeraraghavan
,
Samuel M Young
Ca V 2.1 α 1 subunit motifs that control presynaptic Ca V 2.1 subtype abundance are distinct from Ca V 2.1 preference.
The Journal of physiology
602 (3) (2023)