Julia Santiago

About Julia Santiago

Julia Santiago, With an exceptional h-index of 23 and a recent h-index of 23 (since 2020), a distinguished researcher at Université de Lausanne, specializes in the field of cell wall biology, Structural biology, Cell signaling.

His recent articles reflect a diverse array of research interests and contributions to the field:

Rapid alkalinization factor 22 has a structural and signalling role in root hair cell wall assembly

A CYBDOM protein impacts iron homeostasis and primary root growth under phosphate deficiency in Arabidopsis

Leveraging co-evolutionary insights and AI-based structural modeling to unravel receptor-peptide ligand-binding mechanisms

Microscale Thermophoresis (MST) to Study Rapid Alkalinization Factor (RALF)-Receptor Interactions

Plant cell wall patterning and expansion mediated by protein-peptide-polysaccharide interaction

Structural insights of cell wall integrity signaling during development and immunity

The WAK-like protein RFO1 acts as a sensor of the pectin methylation status in Arabidopsis cell walls to modulate root growth and defense

Ricca’s factors as mobile proteinaceous effectors of electrical signaling

Julia Santiago Information

University

Position

Assistant Professor at the

Citations(all)

6528

Citations(since 2020)

2820

Cited By

4919

hIndex(all)

23

hIndex(since 2020)

23

i10Index(all)

29

i10Index(since 2020)

28

Email

University Profile Page

Google Scholar

Julia Santiago Skills & Research Interests

cell wall biology

Structural biology

Cell signaling

Top articles of Julia Santiago

Rapid alkalinization factor 22 has a structural and signalling role in root hair cell wall assembly

Nature Plants

2024/3/11

A CYBDOM protein impacts iron homeostasis and primary root growth under phosphate deficiency in Arabidopsis

Nature Communications

2024/1/11

Julia Santiago
Julia Santiago

H-Index: 19

Leveraging co-evolutionary insights and AI-based structural modeling to unravel receptor-peptide ligand-binding mechanisms

bioRxiv

2024

Microscale Thermophoresis (MST) to Study Rapid Alkalinization Factor (RALF)-Receptor Interactions

2023/11/30

Plant cell wall patterning and expansion mediated by protein-peptide-polysaccharide interaction

Science

2023/11/10

Structural insights of cell wall integrity signaling during development and immunity

2023/9/20

Julia Santiago
Julia Santiago

H-Index: 19

The WAK-like protein RFO1 acts as a sensor of the pectin methylation status in Arabidopsis cell walls to modulate root growth and defense

Molecular plant

2023/5/1

Ricca’s factors as mobile proteinaceous effectors of electrical signaling

Cell

2023/3/30

Arabidopsis immune responses triggered by cellulose‐and mixed‐linked glucan‐derived oligosaccharides require a group of leucine‐rich repeat malectin receptor kinases

The Plant Journal

2023/2

A pectin-binding peptide with a structural and signaling role in the assembly of the plant cell wall

bioRxiv

2023

HSL1 and BAM1/2 impact epidermal cell development by sensing distinct signaling peptides

Nature communications

2022/2/15

CEP signaling coordinates plant immunity with nitrogen status

bioRxiv

2022/12/20

Phytocytokine signaling integrates cell surface immunity and nitrogen limitation

2022/12/20

Arabidopsis leucine rich repeat-malectin receptor kinases in immunity triggered by cellulose and mixed-linked glucan oligosaccharides

bioRxiv

2022/8/10

A group of Arabidopsis thaliana Leucine Rich Repeat-Malectin Receptor Kinases are required for the activation of immune responses triggered by cellulose and …

bioRxiv

2022/8/10

Perception of a conserved family of plant signalling peptides by the receptor kinase HSL3

Elife

2022/5/26

A thermodynamic switch modulates abscisic acid receptor sensitivity

EMBO JOURNAL

2022/4/4

Computational prediction method to decipher receptor–glycoligand interactions in plant immunity

The Plant Journal

2021/3

Perception of a divergent family of phytocytokines by the Arabidopsis receptor kinase MIK2

Nature Communications

2021/1/29

Arabidopsis natural variation in insect egg-induced cell death reveals a role for LECTIN RECEPTOR KINASE-I. 1

Plant Physiology

2021/1/1

See List of Professors in Julia Santiago University(Université de Lausanne)

Co-Authors

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